TY - JOUR A1 - Abbas, Ioana M. A1 - Vranic, Marija A1 - Hoffmann, Holger A1 - El-Khatib, Ahmed H. A1 - Montes-Bayón, María A1 - Möller, Heiko Michael A1 - Weller, Michael G. T1 - Investigations of the Copper Peptide Hepcidin-25 by LC-MS/MS and NMR⁺ JF - International Journal of Molecular Sciences N2 - Hepcidin-25 was identified as themain iron regulator in the human body, and it by binds to the sole iron-exporter ferroportin. Studies showed that the N-terminus of hepcidin is responsible for this interaction, the same N-terminus that encompasses a small copper(II) binding site known as the ATCUN (amino-terminal Cu(II)- and Ni(II)-binding) motif. Interestingly, this copper-binding property is largely ignored in most papers dealing with hepcidin-25. In this context, detailed investigations of the complex formed between hepcidin-25 and copper could reveal insight into its biological role. The present work focuses on metal-bound hepcidin-25 that can be considered the biologically active form. The first part is devoted to the reversed-phase chromatographic separation of copper-bound and copper-free hepcidin-25 achieved by applying basic mobile phases containing 0.1% ammonia. Further, mass spectrometry (tandemmass spectrometry (MS/MS), high-resolutionmass spectrometry (HRMS)) and nuclear magnetic resonance (NMR) spectroscopy were employed to characterize the copper-peptide. Lastly, a three-dimensional (3D)model of hepcidin-25with bound copper(II) is presented. The identification of metal complexes and potential isoforms and isomers, from which the latter usually are left undetected by mass spectrometry, led to the conclusion that complementary analytical methods are needed to characterize a peptide calibrant or referencematerial comprehensively. Quantitative nuclear magnetic resonance (qNMR), inductively-coupled plasma mass spectrometry (ICP-MS), ion-mobility spectrometry (IMS) and chiral amino acid analysis (AAA) should be considered among others. KW - hepcidin-25 KW - copper KW - nickel KW - copper complex KW - ATCUN motif KW - metal complex KW - MS KW - NMR structure KW - metal peptide KW - metalloprotein KW - metallopeptide KW - isomerization KW - racemization KW - purity KW - reference material Y1 - 2018 U6 - https://doi.org/10.3390/ijms19082271 SN - 1422-0067 SN - 1661-6596 VL - 19 IS - 8 PB - Molecular Diversity Preservation International CY - Basel ER - TY - THES A1 - Abouserie, Ahed T1 - Ionic liquid precursors for multicomponent inorganic nanomaterials T1 - Ionische Flüssigkeiten als Vorstufe für anorganische Mehrkomponenten-Nanomaterialien N2 - Health effects, attributed to the environmental pollution resulted from using solvents such as benzene, are relatively unexplored among petroleum workers, personal use, and laboratory researchers. Solvents can cause various health problems, such as neurotoxicity, immunotoxicity, and carcinogenicity. As such it can be absorbed via epidermal or respiratory into the human body resulting in interacting with molecules that are responsible for biochemical and physiological processes of the brain. Owing to the ever-growing demand for finding a solution, an Ionic liquid can use as an alternative solvent. Ionic liquids are salts in a liquid state at low temperature (below 100 C), or even at room temperature. Ionic liquids impart a unique architectural platform, which has been interesting because of their unusual properties that can be tuned by simple ways such as mixing two ionic liquids. Ionic liquids not only used as reaction solvents but they became a key developing for novel applications based on their thermal stability, electric conductivity with very low vapor pressure in contrast to the conventional solvents. In this study, ionic liquids were used as a solvent and reactant at the same time for the novel nanomaterials synthesis for different applications including solar cells, gas sensors, and water splitting. The field of ionic liquids continues to grow, and become one of the most important branches of science. It appears to be at a point where research and industry can work together in a new way of thinking for green chemistry and sustainable production. N2 - Der Einfluss von kommerziellen organischen Lösungsmitteln auf den menschlichen Körper ist bekannt, jedoch nicht ausreichend untersucht worden. Spezielle Lösungsmittel wie Benzol, welche auch vermehrt in der Petrolchemie genutzt werden, zeigen akute Toxizität auf den biologischen Organismus. Daher ist der Bedarf der Verwendung eines alternativen Lösungsmittel groß. Ionische Flüssigkeiten können hier potentiell eine Alternative sein. Als Ionische Flüssigkeiten (ILs) werden Salze in flüssigem Zustand bei niedriger Temperatur (unter 100 °C) oder sogar bei Raumtemperatur definiert. Aufgrund ihrer Variabilität in der Zusammensetzung der strukturellen ionischen Moleküle ergeben sich ungewöhnliche Eigenschaften, welche auf einfachste Weise durch Mischen zweier ionischer Flüssigkeiten beliebig angepasst werden können. ILs werden sowohl als gewöhnliche Lösungsmittel verwendet, jedoch entwickelten sie sich aufgrund ihrer besonderen Eigenschaften vermehrt zu Reaktionsagenzien. Dies ist zurückzuführen auf ihre gute thermische Stabilität, elektrische Leitfähigkeit und ihrem geringen Dampfdruck. In dieser Arbeit wurden nun spezielle Ionische Flüssigkeiten speziell auf ihr Verhalten in chemischen Reaktionen als Reagenz untersucht. Als Ausgangsreaktion diente hierbei eine neuartige Synthese von Nanomaterialen, welche speziell in Solarzellen, Gassensoren und auch in der katalytischen Wasserspaltung genutzt werden. Das Anwendungspotenzial der ILs gewinnt immer mehr an Bedeutung und führt in der Forschung sowie auch in der Industrie zu neuen Denkweisen für nachhaltige Produktionen und auch Entwicklungen. KW - ionic liquids KW - Alkylpyridinium salts KW - Structure elucidation KW - Phase transitions KW - Nanoparticles KW - Metal Chalcogenides KW - Organic photovoltaic Cell KW - Ionische Flüssigkeiten KW - Alkylpyridinium-Salze KW - Strukturaufklärung KW - Phasenübergänge KW - Nanopartikel KW - Metallchalkogenide KW - Organische Photovoltaikzelle Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-418950 ER - TY - JOUR A1 - Aravopoulou, Dionysia A1 - Kyriakos, Konstantinos A1 - Miasnikova, Anna A1 - Laschewsky, Andre A1 - Papadakis, Christine M. A1 - Kyritsis, Apostolos T1 - Comparative Investigation of the Thermoresponsive Behavior of Two Diblock Copolymers Comprising PNIPAM and PMDEGA Blocks JF - The journal of physical chemistry : B, Condensed matter, materials, surfaces, interfaces & biophysical chemistry N2 - The thermoresponsive behavior of two diblock copolymers PS-b-PNIPAM and PS-b-PMDEGA, which both comprise a hydrophobic polystyrene (PS) block but different thermoresponsive blocks, also differing in length, poly(N-isopropylacrylamide) (PNIPAM) and poly(methoxy diethylene glycol acrylate) (PMDEGA), respectively, was comparatively investigated in a wide temperature range. Concentrated aqueous solutions containing 25 wt % polymer were studied by small-angle X-ray scattering (SAXS), differential scanning calorimetry (DSC), and broadband dielectric spectroscopy (BDS). DSC measurements show that, during the demixing phase transition, the hydration number per oligo(ethylene glycol) side chain in the PS-b-PMDEGA solution decreases rather gradually, even up to 20 °C above the onset of the transition, i.e., the cloud point (CP). In contrast, the PS-b-PNIPAM solution exhibits an abrupt, stepwise dehydration behavior at its CP, indicated by the sharp, narrow endothermic peak. BDS measurements suggest that the organization of the expelled water during the phase transition and the subsequent evolution of the micellar aggregates are different for the two copolymers. In the PS-b-PMDEGA solution, the long-range charge transport process changes significantly at its CP and strong interfacial polarization processes appear, probably due to charge accumulation at the interfaces between the micellar aggregates and the aqueous medium. On the contrary, in the PS-b-PNIPAM solution, the phase transition has only a marginal effect on the long-range conduction process and is accompanied by a reduction in the high-frequency (1 MHz) dielectric permittivity, ε′. The latter effect is attributed to the reduced polarization strength of local chain modes due to an enhancement of intra- and interchain hydrogen bonds (HBs) in the polymer-rich phase during the water detaching process. Surprisingly, our BDS measurements indicate that prior to both the demixing and remixing processes the local chain mobility increases temporally. Our dielectric studies suggest that for PS-b-PNIPAM the water detaching process initiates a few degrees below CP and that the local chain mobility and intra- and/or interchain HBs of the PNIPAM blocks may control its thermoresponsive behavior. Dielectric “jump” experiments show that the kinetics of micellar aggregation in the PS-b-PMDEGA solution is slower than that in the PS-b-PNIPAM solution and is independent of the target temperature within the two-phase region. From the experimental point of view, it is shown that the dielectric susceptibility, especially, the dielectric permittivity, ε′, is a well-suited probe for monitoring both the reversible changes in the molecular dipolar bond polarizability and the long-range interfacial polarization at the phase transition. Y1 - 2018 U6 - https://doi.org/10.1021/acs.jpcb.7b09647 SN - 1520-6106 VL - 122 IS - 9 SP - 2655 EP - 2668 PB - American Chemical Society CY - Washington ER - TY - JOUR A1 - Arias, Hugo R. A1 - Feuerbach, Dominik A1 - Schmidt, Bernd A1 - Heydenreich, Matthias A1 - Paz, Cristian A1 - Ortells, Marcelo O. T1 - Drimane Sesquiterpenoids Noncompetitively Inhibit Human alpha 4 beta 2 Nicotinic Acetylcholine Receptors with Higher Potency Compared to Human alpha 3 beta 4 and alpha 7 Subtypes JF - Journal of natural products N2 - The drimane sesquiterpenoids drimenin, cinnamolide, dendocarbin A, and polygodial were purified from the Canelo tree (Drimys winteri) and chemically characterized by spectroscopic methods. The pharmacological activity of these natural compounds were determined on hα4β2, hα3β4, and hα7 nicotinic acetylcholine receptors (AChRs) by Ca2+ influx measurements. The results established that drimane sesquiterpenoids inhibit AChRs with the following selectivity: hα4β2 > hα3β4 > hα7. In the case of hα4β2 AChRs, the following potency rank order was determined (IC50’s in μM): drimenin (0.97 ± 0.35) > cinnamolide (1.57 ± 0.36) > polygodial (62.5 ± 19.9) ≫ dendocarbin A (no activity). To determine putative structural features underlying the differences in inhibitory potency at hα4β2 AChRs, additional structure–activity relationship and molecular docking experiments were performed. The Ca2+ influx and structural results supported a noncompetitive mechanism of inhibition, where drimenin interacted with luminal and nonluminal (TMD-β2 intrasubunit) sites. The structure–activity relationship results, i.e., the lower the ligand polarity, the higher the inhibitory potency, supported the nonluminal interaction. Ligand binding to both sites might inhibit the hα4β2 AChR by a cooperative mechanism, as shown experimentally (nH > 1). Drimenin could be used as a molecular scaffold for the development of more potent inhibitors with higher selectivity for the hα4β2 AChR. Y1 - 2018 U6 - https://doi.org/10.1021/acs.jnatprod.7b00893 SN - 0163-3864 SN - 1520-6025 VL - 81 IS - 4 SP - 811 EP - 817 PB - American Chemical Society CY - Washington ER - TY - JOUR A1 - Balderas-Valadez, Ruth Fabiola A1 - Estevez-Espinoza, J. O. A1 - Salazar-Kuri, U. A1 - Pacholski, Claudia A1 - Mochan, Wolf Luis A1 - Agarwal, Vivechana T1 - Fabrication of ordered tubular porous silicon structures by colloidal lithography and metal assisted chemical etching BT - SERS performance of 2D porous silicon structures JF - Applied surface science : a journal devoted to applied physics and chemistry of surfaces and interfaces N2 - Fabrication of well-ordered porous silicon tubular structures using colloidal lithography and metal assisted chemical etching is reported. A continuous hexagonal hole/particle gold pattern was designed over monocrystalline silicon through deposition of polyNIPAM microspheres, followed by the surface decoration with gold nanoparticles and thermal treatment. An etching reaction with HF, ethanol and H2O2 dissolved the silicon in contact with the metal nanoparticles (NP), creating a porous tubular array in the "off-metal area". The morphological characterization revealed the formation of a cylindrical hollow porous tubular shape with external and internal diameter of approx. 900 nm and 400 nm respectively, though it can be tuned to other desired sizes by choosing an appropriate dimension for the microspheres. The porous morphology and optical properties were studied as a function of resistivity of silicon substrates. Compared to two different gold templates on cSi and nontubular porous pillar structures, porous silicon tubular framework revealed a maximum surface enhanced Raman scattering enhancement factor of 10(6) for the detection of 6-mercaptopurine (6-MP). Due to the large surface area available for any surface modification, open nanostructured platforms such as those studied here have potential applications in the field of reflection/photoluminescene and SERS based optical bio-/chemical sensors. KW - SERS KW - Porous silicon KW - MACE KW - Colloidal lithography KW - PolyNIPAM KW - 6-Mercaptopurine Y1 - 2018 U6 - https://doi.org/10.1016/j.apsusc.2018.08.120 SN - 0169-4332 SN - 1873-5584 VL - 462 SP - 783 EP - 790 PB - Elsevier CY - Amsterdam ER - TY - BOOK A1 - Bechmann, Wolfgang A1 - Bald, Ilko T1 - Einstieg in die Physikalische Chemie für Naturwissenschaftler T3 - Studienbücher Chemie Lehrbuch N2 - Mit einer ausgewogenen Stoffauswahl aus den Teilgebieten Chemische Thermodynamik, Reaktionskinetik und Elektrochemie wird der Leser an das Studium der Physikalischen Chemie herangeführt. Das Verständnis der Theorie wird durch zahlreiche Aufgabenstellungen und die Angabe ihrer Lösungswege erleichtert. Das Buch gibt dem Studenten darüber hinaus Anregungen für ausgewählte Experimente zu den behandelten Teilgebieten, mit denen sich ein Grundverständnis physikalisch-chemischer Zusammenhänge entwickeln lässt. Y1 - 2018 SN - 978-3-662-55857-7 PB - Springer CY - Berlin ET - 6 ER - TY - THES A1 - Behrendt, Felix Nicolas T1 - New bio-based polymers T1 - Neue biobasierte Polymere BT - synthesis and polymerization of cystine-based macrocycles BT - Synthese und Polymerisation von cystinbasierten Makrozyklen N2 - Redox-responsive polymers, such as poly(disulfide)s, are a versatile class of polymers with potential applications including gene- and drug-carrier systems. Their degradability under reductive conditions allows for a controlled response to the different redox states that are present throughout the body. Poly(disulfide)s are typically synthesized by step growth polymerizations. Step growth polymerizations, however, may suffer from low conversions and therefore low molar masses, limiting potential applications. The purpose of this thesis was therefore to find and investigate new synthetic routes towards the synthesis of amino acid-based poly(disulfide)s. The different routes in this thesis include entropy-driven ring opening polymerizations of novel macrocyclic monomers, derived from cystine derivatives. These monomers were obtained with overall yields of up to 77% and were analyzed by mass spectrometry as well as by 1D and 2D NMR spectroscopy. The kinetics of the entropy-driven ring-opening metathesis polymerization (ED-ROMP) were thoroughly investigated in dependence of temperature, monomer concentration, and catalyst concentration. The polymerization was optimized to yield poly(disulfide)s with weight average molar masses of up to 80 kDa and conversions of ~80%, at the thermodynamic equilibrium. Additionally, an alternative metal free polymerization, namely the entropy-driven ring-opening disulfide metathesis polymerization (ED-RODiMP) was established for the polymerization of the macrocyclic monomers. The effect of different solvents, concentrations and catalyst loadings on the polymerization process and its kinetics were studied. Polymers with very high weight average molar masses of up to 177 kDa were obtained. Moreover, various post-polymerization reactions were successfully performed. This work provides the first example of the homopolymerization of endo-cyclic disulfides by ED-ROMP and the first substantial study into the kinetics of the ED-RODiMP process. N2 - Redoxresponsive Polymere, wie etwa Polydisulfide, sind eine vielseitige Klasse von Polymeren, die unter anderem als Gen- und Wirkstoffträgersysteme eingesetzt werden können. Ihre Abbaubarkeit unter reduktiven Bedingungen ermöglicht eine kontrollierte Reaktion auf die verschiedenen Redoxzustände im Körper. Polydisulfide werden jedoch häufig durch Stufenwachstums-polymerisationen synthetisiert. Diese führen oft zu niedrigen Umsätzen und daher zu niedrigen molaren Massen. Das Ziel dieser Arbeit war daher neue Synthesewege für aminosäurebasierte Polydisulfide zu finden und zu untersuchen. Diese Wege beinhalteten entropiegetriebene ringöffnende Polymerisationen von neuen makrozyklischen Monomeren, auf der Basis von Cystin-Derivaten. Diese Monomere konnten mit einer Gesamtausbeute von bis zu 77% synthetisiert werden und wurden mit Massenspektrometrie sowie mit 1D- und 2D-NMR-Spektroskopie analysiert. Die Kinetik der entropiegetriebenen ringöffnenden Metathese Polymerisation (ED-ROMP) wurde im Hinblick auf Temperatur, Monomerkonzentration und Katalysatormenge sorgfältig untersucht. Durch Optimierungen konnten Polydisulfide mit gewichtsmittleren Molmassen von bis zu 80 kDa und Umsätzen von ~80%, im thermodynamischen Gleichgewicht synthetisiert werden. Zusätzlich wurde eine alternative metallfreie Polymerisation, die entropiegetriebene ringöffnende Disulfidmetathese Polymerisation (ED-RODiMP), für die Polymerisation der makrozyklischen Monomere etabliert. Die Auswirkungen verschiedener Lösungsmittel, Konzentrationen und Katalysatorkonzentrationen auf die Kinetik dieses Polymerisationsprozesses wurden untersucht. Hierdurch wurden Polymere mit sehr hohen gewichtsmittleren Molmassen von bis zu 177 kDa erhalten. Darüber hinaus wurden verschiedene Postpolymerisationsreaktionen erfolgreich durchgeführt. Diese Arbeit liefert das erste Beispiel für die Homopolymerisation endo-zyklischer Disulfide durch ROMP und eine erste substanzielle Studie der Kinetik des ED-RODiMP-Prozesses. KW - polymers KW - ADMET KW - ROMP KW - disulfide KW - macrocycles KW - ring-opening polymerization KW - amino acids KW - Polymere KW - ADMET KW - ROMP KW - Disulfide KW - Makrozyklen KW - ringöffnende Polymerisation KW - Aminosäuren Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-418316 ER - TY - JOUR A1 - Behrendt, Felix Nicolas A1 - Schlaad, Helmut T1 - Entropy-Driven Ring-Opening Disulfide Metathesis Polymerization for the Synthesis of Functional Poly(disulfide)s JF - Macromolecular rapid communications N2 - Metal-free entropy-driven disulfide metathesis polymerization of unsaturated L-cystine based macrocycles produces high-molar-mass heterofunctional poly(disulfide)s, i.e., poly(ester-disulfide-alkene) and poly(amide-disulfide-alkene); M-w(app) = 44-60 kDa, (sic) > 1.7. The polymerization is fast and reaches equilibrium within 1-5 minutes (monomer conversion 70-90%) in polar aprotic solvents such as N,N-dimethylacetamide, dimethylsulfoxide, or y-valerolactone. Thiol-terminated polymers are stable in bulk or when dissolved in weakly polar solvents, but rapidly depolymerize in dilute polar solution. KW - disulfide KW - macrocycles KW - metathesis KW - ring-opening polymerization Y1 - 2018 U6 - https://doi.org/10.1002/marc.201700735 SN - 1022-1336 SN - 1521-3927 VL - 39 IS - 6 PB - Wiley-VCH CY - Weinheim ER - TY - JOUR A1 - Bornhorst, Julia A1 - Kipp, Anna Patricia A1 - Haase, Hajo A1 - Meyer, Soeren A1 - Schwerdtle, Tanja T1 - The crux of inept biomarkers for risks and benefits of trace elements JF - Trends in Analytical Chemistry N2 - Nowadays, the role of trace elements (TE) is of growing interest because dyshomeostasis of selenium (Se), manganese (Mn), zinc (Zn), and copper (Cu) is supposed to be a risk factor for several diseases. Thereby, research focuses on identifying new biomarkers for the TE status to allow for a more reliable description of the individual TE and health status. This review mirrors a lack of well-defined, sensitive, and selective biomarkers and summarizes technical limitations to measure them. Thus, the capacity to assess the relationship between dietary TE intake, homeostasis, and health is restricted, which would otherwise provide the basis to define adequate intake levels of single TE in both healthy and diseased humans. Besides that, our knowledge is even more limited with respect to the real life situation of combined TE intake and putative interactions between single TE. KW - Trace elements KW - Copper KW - Zinc KW - Manganese KW - Selenium KW - Biomarker KW - Inductively coupled plasma mass spectrometry KW - Hyphenated techniques KW - Isotope ratios Y1 - 2018 U6 - https://doi.org/10.1016/j.trac.2017.11.007 SN - 0165-9936 SN - 1879-3142 VL - 104 SP - 183 EP - 190 PB - Elsevier CY - Oxford ER - TY - JOUR A1 - Bouakline, Foudhil T1 - Unambiguous signature of the berry phase in intense laser dissociation of diatomic molecules JF - The journal of physical chemistry letters N2 - We report strong evidence of Berry phase effects in intense laser dissociation of D-2(+) molecules, manifested as Aharonov-Bohm-like oscillations in the photofragment angular distribution (PAD). Our calculations show that this interference pattern strongly depends on the parity of the diatom initial rotational state, (-1)(j). Indeed, the PAD local maxima (minima) observed in one case (j odd) correspond to local minima (maxima) in the other case (j even). Using simple topological arguments, we clearly show that such interference conversion is a direct signature of the Berry phase. The sole effect of the latter on the rovibrational wave function is a sign change of the relative phase between two interfering components, which wind in opposite senses around a light-induced conical intersection (LICI). Therefore, encirclement of the LICI leads to constructive (j odd) or destructive (j even) self-interference of the initial nuclear wavepacket in the dissociative limit. To corroborate our theoretical findings, we suggest an experiment of strong-field indirect dissociation of D-2(+) molecules, comparing the PAD of the ortho and para molecular species in directions nearly perpendicular to the laser polarization axis. Y1 - 2018 U6 - https://doi.org/10.1021/acs.jpclett.8b00607 SN - 1948-7185 VL - 9 IS - 9 SP - 2271 EP - 2277 PB - American Chemical Society CY - Washington ER - TY - JOUR A1 - Burek, Katja A1 - Krause, Felix A1 - Schwotzer, Matthias A1 - Nefedov, Alexei A1 - Süssmuth, Julia A1 - Haubitz, Toni A1 - Kumke, Michael Uwe A1 - Thissen, Peter T1 - Hydrophobic Properties of Calcium-Silicate Hydrates Doped with Rare-Earth Elements JF - ACS sustainable chemistry & engineering N2 - In this study, the apparent relationship between the transport process and the surface chemistry of the Calcium-Silicate Hydrate (CSH) phases was investigated. For this purpose, a method was developed to synthesize ultrathin CSH phases to be used as a model substrate with the specific modification of their structure by introducing europium (Eu(III)). The structural and chemical changes during this Eu(III)-doping were observed by means of infrared spectroscopy (IR), X-ray photoelectron spectroscopy (XPS), and time-resolved laser fluorescence spectroscopy (TRLFS). These alterations of the CSH phases led to significant changes in the surface chemistry and consequently to considerable variations in the interaction with water, as evidenced by measurements of the contact angles on the modified model substrates. Our results provide the basis for a more profound molecular understanding of reactive transport processes in cement-based systems. Furthermore, these results broaden the perspective of improving the stability of cement-based materials, which are subjected to the impact of aggressive aqueous environments through targeted modifications of the CSH phases. KW - Rare-earth elements KW - Europium KW - Luminescence KW - Metal-proton exchange reaction KW - Contact angle KW - Infrared spectroscopy KW - X-ray photoelectron spectroscopy Y1 - 2018 U6 - https://doi.org/10.1021/acssuschemeng.8b03244 SN - 2168-0485 VL - 6 IS - 11 SP - 14669 EP - 14678 PB - American Chemical Society CY - Washington ER - TY - JOUR A1 - Büchner, Dörthe A1 - John, Leonard A1 - Mertens, Monique A1 - Wessig, Pablo T1 - Detection of dsDNA with [1,3]Dioxolo[4,5-f]benzodioxol (DBD) Dyes JF - Chemistry - a European journal N2 - DBD fluorescent dyes have proven to be useful in numerous applications. To widen the range of biological applications, we propose three different types of DBD molecules that have been modified in such a way that DNA interaction becomes probable. After the successful synthesis of all three compounds, we tested their fluorescent properties and their DNA binding abilities. Two of the three probes exhibit an interaction with dsDNA with subsequent fluorescence enhancement. The determined binding constants of the two new DNA dyes are comparable to other minorgroove-binding dyes. Their large Stokes shifts and their long fluorescent lifetimes are outstanding features of these dyes. KW - DNA recognition KW - dyes/pigments KW - fluorescent probes KW - heterocycles KW - scatchard plot Y1 - 2018 U6 - https://doi.org/10.1002/chem.201804057 SN - 0947-6539 SN - 1521-3765 VL - 24 IS - 60 SP - 16183 EP - 16190 PB - Wiley-VCH CY - Weinheim ER - TY - THES A1 - Chaleawlert-Umpon, Saowaluk T1 - Sustainable electrode materials based on lignin T1 - Ligninbasierte nachhaltige Elektrodenmaterialien N2 - The utilization of lignin as renewable electrode material for electrochemical energy storage is a sustainable approach for future batteries and supercapacitors. The composite electrode was fabricated from Kraft lignin and conductive carbon and the charge storage contribution was determined in terms of electrical double layer (EDL) and redox reactions. The important factors at play for achieving high faradaic charge storage capacity contribute to high surface area, accessibility of redox sites in lignin and their interaction with conductive additives. A thinner layer of lignin covering the high surface area of carbon facilitates the electron transfer process with a shorter pathway from the active sites of nonconductive lignin to the current collector leading to the improvement of faradaic charge storage capacity. Composite electrodes from lignin and carbon would be even more sustainable if the fluorinated binder can be omitted. A new route to fabricate a binder-free composite electrode from Kraft lignin and high surface area carbon has been proposed by crosslinking lignin with glyoxal. A high molecular weight of lignin is obtained to enhance both electroactivity and binder capability in composite electrodes. The order of the processing step of crosslinking lignin on the composite electrode plays a crucial role in achieving a stable electrode and high charge storage capacity. The crosslinked lignin based electrodes are promising since they allow for more stable, sustainable, halogen-free and environmentally benign devices for energy storage applications. Furthermore, improvement of the amount of redox active groups (quinone groups) in lignin is useful to enhance the capacity in lithium battery applications. Direct oxidative demethylation by cerium ammonium nitrate has been carried out under mild conditions. This proves that an increase of quinone groups is able to enhance the performance of lithium battery. Thus, lignin is a promising material and could be a good candidate for application in sustainable energy storage devices. N2 - Die Verwendung von Lignin als erneuerbares Ausgangsmaterial für Elektroden ist ein nachhaltiger Ansatz für die Herstellung der nächsten Generation von Batterien und Superkondensatoren. In dieser Arbeit werden Verbundelektroden auf der Basis von Kraft-Lignin und leitfähigem Kohlenstoff hergestellt und getestet. Die Beiträge des Aufbaus einer elektrischen Doppelschicht (EDL) und der Redoxreaktionen zur Kapazität der Elektrode werden diskutiert. Die wichtigsten Faktoren um eine hohe faradaysche Kapazität der aktiven Gruppen in Lignin zu erreichen sind eine große Oberfläche, die Zugänglichkeit der redoxaktiven Gruppen, sowie die Wechselwirkung mit leitfähigen Additiven. Dabei verringert eine dünnere Ligninschicht auf der Oberfläche des leitfähigen Kohlenstoffs den Elektronentransportweg zwischen den redoxaktiven Gruppen und dem Stromabnehmer und wirkt sich somit positiv auf die faradaysche Kapazität aus. Traditionelle Verbundelektroden enthalten in der Regel fluorierte Bindemittel, was deren Nachhaltigkeit in Frage stellt. Die Verwendung von Glyoxal als Quervernetzer für Lignin stellt eine Alternative zur Herstellung von bindemittelfreien ligninbasierten Verbundelektroden dar. Durch die Quervernetzung wird Lignin mit hohem Molekulargewicht erhalten, was sich insbesondere vorteilhaft auf die Stabilität der Elektroden auswirkt. Für das Erreichen einer hohen Kapazität spielt allerdings die Reihenfolge der Produktionsschritte eine entscheidende Rolle, was hier auch diskutiert wird. Eine Erhöhung der Anzahl an redoxativen Gruppen, insbesondere Chinon-Funktionalitäten, im Lignin führt darüber hinaus zur Erhöhung der Kapazität in primären Lithiumbatterien. Die direkte oxidative Demethylierung von Phenylethern mit Hilfe von Cerammoniumnitrat wurde in dieser Arbeit unter milden Reaktionsbedingungen durchgeführt und die verbesserte Kapazität in Lithiumbatterien aufgrund der erhöhten Anzahl an redoxaktiven Gruppen aufgezeigt. Abschließend kann Lignin, quervernetzt oder oxidiert, als vielversprechender Wegbereiter für nachhaltige Materialen in der Energiespeicherung angesehen werden. KW - lignin KW - energy storage KW - sustainable energy storage materials KW - Lignin KW - Energiespeicher KW - nachhaltige Energiespeichermaterialien Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-411793 ER - TY - THES A1 - Chen, Guoxiang T1 - Nanoparticles at solid interfaces N2 - Nanoparticles (NPs) are particles between 1 and 100 nanometers in size. They have attracted enormous research interests owing to their remarkable physicochemical properties and potential applications in the optics, catalysis, sensing, electronics, or optical devices. The thesis investigates systems of NPs attached to planar substrates. In the first part of the results section of the thesis a new method is presented to immobilize NPs. In many NP applications a strong, persistent adhesion to substrates is a key requirement. Up to now this has been achieved with various methods, which are not always the optimum regarding adhesion strength or applicability. We propose a new method which uses capillarity to enhance the binding agents in the contact area between NP and substrate. The adhesion strength resulting from the new approach is investigated in detail and it is shown that the new approach is superior to older methods in several ways. The following section presents the optical visualization of nano-sized objects through a combination of thin film surface distortion and interference enhanced optical reflection microscopy. It is a new, fast and non-destructive technique. It not only reveals the location of NPs as small as 20nm attached to planar surfaces and embedded in a molecularly thin liquid film. It also allows the measurement of the geometry of the surface distortion of the liquid film. Even for small NPs the meniscus reaches out for micrometers, which is the reason why the NPs produce such a pronounced optical footprint. The nucleation and growth of individual bubbles is presented in chapter 5. Nucleation is a ubiquitous natural phenomenon and of great importance in numerous industrial processes. Typically it occurs on very small scales (nanometers) and it is of a random nature (thermodynamics of small systems). Up to now most experimental nucleation studies deal with a large number of individual nucleation processes to cope with its inherently statistical, spatio-temporal character. In contrast, in this thesis the individual O2-bubble formation from single localized platinum NP active site is studied experimentally. The bubble formation is initiated by the catalytic reaction of H2O2 on the Pt surface. It is studied how the bubble nucleation and growth depends on the NP size, the H2O2 concentration and the substrate surface properties. It is observed that in some cases the bubbles move laterally over the substrate surface, driven by the O2-production and the film ablation. KW - Nanoparticles, Adhesion, Interfaces, Bubble, Imaging Y1 - 2018 ER - TY - JOUR A1 - Chen, Ye A1 - Song, Qilei A1 - Zhao, Junpeng A1 - Gong, Xiangjun A1 - Schlaad, Helmut A1 - Zhang, Guangzhao T1 - Betulin-Constituted multiblock amphiphiles for broad-spectrum protein resistance JF - ACS applied materials & interfaces N2 - Multiblock-like amphiphilic polyurethanes constituted by poly(ethylene oxide) and biosourced betulin are designed for antifouling and synthesized by a convenient organocatalytic route comprising tandem chain-growth and step-growth polymerizations. The doping density of betulin (D-B) in the polymer chain structure is readily varied by a mixed-initiator strategy. The spin-coated polymer films exhibit unique nanophase separation and protein resistance behaviors. Higher D-B leads to enhanced surface hydrophobicity and, unexpectedly, improved protein resistance. It is found that the surface holds molecular-level heterogeneity when D-B is substantially high due to restricted phase separation; therefore, broad-spectrum protein resistance is achieved despite considerable surface hydrophobicity. As D-B decreases, the distance between adjacent betulin units increases so that hydrophobic nanodomains are formed, which provide enough landing areas for relatively small-sized proteins to adsorb on the surface. KW - amphiphilic surface KW - antifouling KW - multiblock copolymer KW - organocatalytic polymerization KW - renewable resource Y1 - 2018 U6 - https://doi.org/10.1021/acsami.7b16255 SN - 1944-8244 VL - 10 IS - 7 SP - 6593 EP - 6600 PB - American Chemical Society CY - Washington ER - TY - THES A1 - Cheng, Xiao T1 - Controlled solvent vapor annealing of block copolymer films T1 - Kontrolliertes Lösungsmitteldampfglühen von Blockcopolymerfilmen N2 - This project was focused on exploring the phase behavior of poly(styrene)187000-block-poly(2-vinylpyridine)203000 (SV390) with high molecular weight (390 kg/mol) in thin films, in which the self-assembly of block copolymers (BCPs) was realized via thermo-solvent annealing. The advanced processing technique of solvent vapor treatment provides controlled and stable conditions. In Chapter 3, the factors to influence the annealing process and the swelling behavior of homopolymers are presented and discussed. The swelling behavior of BCP in films is controlled by the temperature of the vapor and of the substrate, on one hand, and variation of the saturation of the solvent vapor atmosphere (different solvents), on the other hand. Additional factors like the geometry and material of the chamber, the type of flow inside the chamber etc. also influence the reproducibility and stability of the processing. The slightly selective solvent vapor of chloroform gives 10% more swelling of P2VP than PS in films with thickness of ~40 nm. The tunable morphology in ultrathin films of high molecular weight BCP (SV390) was investigated in Chapter 4. First, the swelling behavior can be precisely tuned by temperature and/or vapor flow separately, which provided information for exploring the multiple-parameter-influenced segmental chain mobility of polymer films. The equilibrium state of SV390 in thin films influenced by temperature was realized at various temperatures with the same degree of swelling. Various methods including characterization with SFM, metallization and RIE were used to identify the morphology of films as porous half-layer with PS dots and P2VP matrix. The kinetic investigations demonstrate that on substrates with either weak or strong interaction the original morphology of the BCP with high molecular weight is changed very fast within 5 min, and the further annealing serves for annihilation of defects. The morphological development of symmetric BCP in films with thickness increasing from half-layer to one-layer influenced by confinement factors of gradient film thicknesses and various surface properties of substrates was studied in Chapter 5. SV390 and SV99 films show bulk lamella-forming morphology after slightly selective solvent vapor (chloroform) treatment. SV99 films show cylinder-forming morphology under strongly selective solvent vapor (toluene) treatment since the asymmetric structure (caused by toluene uptake in PS blocks only) of SV99 block copolymer during annealing. Both kinds of morphology (lamella and cylinder) are influenced by the film thickness. The annealed morphology of SV390 and SV99 influenced by the combination of confined film and substrate property is similar to the morphology on flat silicon wafers. In this chapter the gradients in the film thickness and surface properties of the substrates with regard to their influence on the morphological development in thin BCP films are presented. Directed self-assembly (graphoepitaxy) of this SV390 was also investigated to compare with systematically reported SV99. In Chapter 6 an approach to induced oriented microphase separation in thick block copolymer films via treatment with the oriented vapor flow using mini-extruder is envisaged to be an alternative to existing methodologies, e.g. via non-solvent-induced phase separation. The preliminary tests performed in this study confirm potential perspective of this method, which alters the structure through the bulk of the film (as revealed by SAXS measurements), but more detailed studies have to be conducted in order to optimize the preparation. N2 - Im Rahmen dieser Arbeit wurde das Phasenverhalten von Poly(styrol)_187000 -block-poly(2-Vinylpyridin)_203000 (SV^390 ) hohen Molekulargewichts (390 kg/mol) in dünnen Filmen untersucht, in denen die Selbstassemblierung der Block-Copolymere durch Lösungsmitteltempern erreicht wurde. Das hochentwickelte Verfahren der Behandlung mit Lösungsmitteldampf bietet kontrollierte und stabile Bedingungen. In *Kapitel 3* werden die Faktoren diskutiert, die den Prozess des Temperns und das Schwellverhalten der dünnen Block-Copolymer Filme beeinflussen. Das Schwellverhalten von Block-Copolymeren in Filmen wird einerseits durch die Temperaturen des Lösungsmitteldampfes und des Substrates sowie andererseits dem Sättigungs-Dampfdruck kontrolliert. Zusätzlich beeinflussen auch Faktoren wie die Geometrie und das Material der Kammer sowie die Art der Strömung in der Kammer die Reproduzierbarkeit und Stabilität der Messungen. Der geringfügig selektive Lösungsmitteldampf von Chloroform führt zu 10% stärkerem Schwellen des P2VP-Blocks im Vergleich zu PS in Filmen mit einer Dicke von ca. 40 nm. Die variable Morphologie ultradünner Filme eines Block-Copolymers hohen Molekulargewichts (SV^390 ) wurde in *Kapitel 4* untersucht. Das Schwellverhalten kann durch die Temperatur und den Dampffluss unabhängig voneinander präzise beeinflusst werden. Die Umgebungstemperatur stellt einen limitierenden Faktor für den Bereich der Annealing-Temperatur aufgrund der möglichen Kondensation des Lösungsmitteldampfes dar. Mehrere Methoden, wie zum Beispiel die Charakterisierung mit Rasterkraftmikroskopie, Metallisierung und reaktives Ionenätzen, wurden verwendet, um die Morphologie der Filme als perforierte Lamellen mit PS-Kugeln und P2VP-Matrix zu bestimmen. Eine Analyse der Kinetik der Strukturbildung zeigt, dass sich die ursprüngliche Morphologie von Block-Copolymeren hohen Molekulargewichts sowohl auf Substraten mit schwacher als auch starker Wechselwirkung innerhalb von 5 min ändert und das weitere Tempern zum Ausheilen von Defekten führt. Die morphologische Veränderung von symmetrischen Block-Copolymeren bei Filmdicken zwischen einer halben Domänendicke und einer ganzen Domänendicke wurde in *Kapitel 5* in Abhängigkeit von Gradienten der Filmdicke und verschiedenen Oberflächeneigenschaften der Substrate untersucht. SV^390 und SV^99 Filme zeigen eine lamellare Bulk-Morphologie nach Behandlung mit geringfügig selektivem Lösungsmitteldampf (Chloroform). SV^99 Filme bilden eine zylindrische Morphologie unter Behandlung mit stark selektivem Lösungsmitteldampf (Toluol) aus, weil das SV^99 Block-Copolymer während des Temperns eine asymmetrische Struktur aufweist (Toluol-Aufnahme ausschließlich im Polystyrol-Block). Beide Morphologien (Lamellen und Zylinder) werden durch die Filmdicke beeinflusst. Die Morphologie von SV^390 und SV^99 nach Tempern ist abhängig von der Filmdicke und den Substrat-Eigenschaften und ähnlich der Morphologie auf flachen Silicium-Wafern. In *Kapitel 6* wird ein Ansatz zur induzierten orientierten Mikrophasenseparation in dicken Block-Copolymer Filmen durch Behandlung mit orientiertem Dampffluss unter Verwendung eines Miniextruders vorgestellt, der als Alternative zu existierenden Verfahren wie Nichtlösungsmittel-induzierter Phasenseparation dienen könnte. Die ersten im Rahmen dieser Arbeit durchgeführten Untersuchungen zeigen das Potential der Methode auf, welche die Struktur im gesamten Volumen des Films durchgehend beeinflusst (durch SAXS-Messungen gezeigt). Jedoch sind detailliertere Studien notwendig, um die Prozedur zu optimieren. KW - block copolymer KW - thin films KW - solvo-thermal annealing KW - Block-copolymer KW - dünne Filme KW - Lösungsmittel-thermisches Tempern Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-424179 ER - TY - JOUR A1 - Cherstvy, Andrey G. A1 - Nagel, Oliver A1 - Beta, Carsten A1 - Metzler, Ralf T1 - Non-Gaussianity, population heterogeneity, and transient superdiffusion in the spreading dynamics of amoeboid cells JF - Physical chemistry, chemical physics : a journal of European Chemical Societies N2 - What is the underlying diffusion process governing the spreading dynamics and search strategies employed by amoeboid cells? Based on the statistical analysis of experimental single-cell tracking data of the two-dimensional motion of the Dictyostelium discoideum amoeboid cells, we quantify their diffusive behaviour based on a number of standard and complementary statistical indicators. We compute the ensemble- and time-averaged mean-squared displacements (MSDs) of the diffusing amoebae cells and observe a pronounced spread of short-time diffusion coefficients and anomalous MSD-scaling exponents for individual cells. The distribution functions of the cell displacements, the long-tailed distribution of instantaneous speeds, and the velocity autocorrelations are also computed. In particular, we observe a systematic superdiffusive short-time behaviour for the ensemble- and time-averaged MSDs of the amoeboid cells. Also, a clear anti-correlation of scaling exponents and generalised diffusivity values for different cells is detected. Most significantly, we demonstrate that the distribution function of the cell displacements has a strongly non-Gaussian shape andusing a rescaled spatio-temporal variablethe cell-displacement data collapse onto a universal master curve. The current analysis of single-cell motions can be implemented for quantifying diffusive behaviours in other living-matter systems, in particular, when effects of active transport, non-Gaussian displacements, and heterogeneity of the population are involved in the dynamics. Y1 - 2018 U6 - https://doi.org/10.1039/c8cp04254c SN - 1463-9076 SN - 1463-9084 VL - 20 IS - 35 SP - 23034 EP - 23054 PB - Royal Society of Chemistry CY - Cambridge ER - TY - THES A1 - Choi, Youngeun T1 - DNA origami structures as versatile platforms for nanophotonics T1 - DNA Origami Struktruen als Vielseitige Plattform für Nanophotonik N2 - Nanophotonics is the field of science and engineering aimed at studying the light-matter interactions on the nanoscale. One of the key aspects in studying such optics at the nanoscale is the ability to assemble the material components in a spatially controlled manner. In this work, DNA origami nanostructures were used to self-assemble dye molecules and DNA coated plasmonic nanoparticles. Optical properties of dye nanoarrays, where the dyes were arranged at distances where they can interact by Förster resonance energy transfer (FRET), were systematically studied according to the size and arrangement of the dyes using fluorescein (FAM) as the donor and cyanine 3 (Cy 3) as the acceptor. The optimized design, based on steady-state and time-resolved fluorometry, was utilized in developing a ratiometric pH sensor with pH-inert coumarin 343 (C343) as the donor and pH-sensitive FAM as the acceptor. This design was further applied in developing a ratiometric toxin sensor, where the donor C343 is unresponsive and FAM is responsive to thioacetamide (TAA) which is a well-known hepatotoxin. The results indicate that the sensitivity of the ratiometric sensor can be improved by simply arranging the dyes into a well-defined array. The ability to assemble multiple fluorophores without dye-dye aggregation also provides a strategy to amplify the signal measured from a fluorescent reporter, and was utilized here to develop a reporter for sensing oligonucleotides. By incorporating target capturing sequences and multiple fluorophores (ATTO 647N dye molecules), a reporter for microbead-based assay for non-amplified target oligonucleotide sensing was developed. Analysis of the assay using VideoScan, a fluorescence microscope-based technology capable of conducting multiplex analysis, showed the DNA origami nanostructure based reporter to have a lower limit of detection than a single stranded DNA reporter. Lastly, plasmonic nanostructures were assembled on DNA origami nanostructures as substrates to study interesting optical behaviors of molecules in the near-field. Specifically, DNA coated gold nanoparticles, silver nanoparticles, and gold nanorods, were placed on the DNA origami nanostructure aiming to study surface-enhanced fluorescence (SEF) and surface-enhanced Raman scattering (SERS) of molecules placed in the hotspot of coupled plasmonic structures. N2 - Nanophotonik bezeichnet die Untersuchung von Licht in Wechselwirkung mit Materie im Nanometermaßstab. Die exakte Kontrolle über den Aufbau und die räumliche Anordnung der beteiligten Komponenten ist ein entscheidender Faktor für die Erforschung der Optik nanoskalierter Systeme. Eine mögliche Lösung bietet die selbstorganisatorische Eigenschaft von DNA-Origami-Nanostrukturen, die im Rahmen dieser Dissertation, insbesondere zur Kopplung verschiedener Farbstoffe bzw. plasmonisch aktiver Nanopartikel, verwendet wurden. Im ersten Teil dieser Dissertation wurden unterschiedliche Förster-Resonanzenergietransfer- (FRET) Farbstoff-Matrizen, bestehend aus Fluorescein (FAM) als FRET-Donor und Cyanine 3 (Cy 3) als FRET-Akzeptor, hergestellt und nachfolgend hinsichtlich des Einflusses ihrer Gesamtgröße und ihrer Anordnung via statischer und zeitaufgelöster Fluoreszenzspektroskopie untersucht. Daraufhin erfolgte die Weiterentwicklung der ermittelten optimalen Anordnung der Farbstoffe in einen ratiometrischen pH-Sensor, bestehend aus dem pH stabilen Coumarin 343 (C343) als FRET-Donor und dem pH sensitiven FAM als FRET-Akzeptor. Die erhaltenen Ergebnisse zeigten, dass sich die Sensitivität ratiometrischer Sensoren, insbesondere durch die wohldefinierte Anordnung der beteiligten Farbstoffe in der Matrize, deutlich steigern lassen. Selbige Anordnung konnte auch erfolgreich zur Entwicklung eines Giftstoffsensors, zum Nachweis des Hepatoxins Thioacetamid (TAA), verwendet werden. Die Möglichkeit der Anordnung mehrerer Farbstoffe, unter Vermeidung ungewollter Farbstoff-Aggregation, ermöglicht außerdem die Verstärkung der Signale sogenannter Fluoreszenzreporter. Dies führte, im Rahmen dieser Arbeit, zur erfolgreichen Entwicklung eines auf Mikroperlen basierenden Oligonukleotid-Sensors, welcher ohne die Notwendigkeit einer vorherigen Zielverstärkung (z.B. durch Polymerase-Kettenreaktion) auskommt. Die anschließende Analyse mittels VideoScan, einer Multiplex-Analyse-Technik basierend auf der Fluoreszenzmikroskopie, ergab deutlich niedrigere Nachweisgrenzen für auf DNA-Origami basierende Reporter im Vergleich zu DNA-Einzelstrang basierenden Reportern. Abschließend erfolgte die Verwendung der DNA-Origamis als Substrat für die präzise räumliche Anordnung verschiedener plasmonisch aktiver Nanopartikel zur Untersuchung des optischen Verhaltens von Zielmolekülen im plasmonischen Nahfeld. Die Untersuchung der oberflächenverstärkten Fluoreszenz (SEF) und oberflächenverstärkten Raman-Streuung (SERS) von Molekülen im plasmonischer Hotspots erfolgte insbesondere mit Fokus auf den Einfluss der unterschiedlichen Anordnung von Gold-Nanostäbchen, Gold-Nanopartikel, und Silber-Nanopartikel. KW - DNA origami KW - Förster resonance energy transfer KW - plasmonics KW - DNA Origami KW - Förster-Resonanzenergietransfer KW - Plasmonik Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-421483 ER - TY - JOUR A1 - Choi, Youngeun A1 - Kotthoff, Lisa A1 - Olejko, Lydia A1 - Resch-Genger, Ute A1 - Bald, Ilko T1 - DNA origami-based forster resonance energy-transfer Nanoarrays and their application as ratiometric sensors JF - ACS applied materials & interfaces N2 - DNA origami nanostructures provide a platform where dye molecules can be arranged with nanoscale accuracy allowing to assemble multiple fluorophores without dye-dye aggregation. Aiming to develop a bright and sensitive ratiometric sensor system, we systematically studied the optical properties of nanoarrays of dyes built on DNA origami platforms using a DNA template that provides a high versatility of label choice at minimum cost. The dyes are arranged at distances, at which they efficiently interact by Forster resonance energy transfer (FRET). To optimize array brightness, the FRET efficiencies between the donor fluorescein (FAM) and the acceptor cyanine 3 were determined for different sizes of the array and for different arrangements of the dye molecules within the array. By utilizing nanoarrays providing optimum FRET efficiency and brightness, we subsequently designed a ratiometric pH nanosensor using coumarin 343 as a pH-inert FRET donor and FAM as a pH responsive acceptor. Our results indicate that the sensitivity of a ratiometric sensor can be improved simply by arranging the dyes into a well-defined array. The dyes used here can be easily replaced by other analyte-responsive dyes, demonstrating the huge potential of DNA nanotechnology for light harvesting, signal enhancement, and sensing schemes in life sciences. KW - DNA origami KW - nanoarray KW - FRET KW - ratiometric sensing KW - pH sensing Y1 - 2018 U6 - https://doi.org/10.1021/acsami.8b03585 SN - 1944-8244 SN - 1944-8252 VL - 10 IS - 27 SP - 23295 EP - 23302 PB - American Chemical Society CY - Washington ER - TY - JOUR A1 - Czarnecki, Maciej A1 - Wessig, Pablo T1 - Scaling Up UV-Mediated Intramolecular Photodehydro-Diels-Alder Reactions Using a Homemade High-Performance Annular Continuous-Flow Reactor JF - Organic Process Research & Development N2 - Here we present a self-made annular continuous-flow reactor that can be used in the UV/vis range in an internal numbering-up manner. As a model reaction, we chose a powerful batch-scale-limited benzoannelation method, namely, an intramolecular photodehydro-Diels-Alder (IMPDDA) reaction. The scale-up potential of this particular photochemical benchmark reaction toward the preparation of macrocylic (1,7)naphthalenophanes by variation of selected flow parameters is presented. KW - flow photochemistry KW - photocycloaddition KW - photodehydro-Diels-Alder reaction KW - scale-up Y1 - 2018 U6 - https://doi.org/10.1021/acs.oprd.8b00353 SN - 1083-6160 SN - 1520-586X VL - 22 IS - 12 SP - 1823 EP - 1827 PB - American Chemical Society CY - Washington ER -