TY - JOUR A1 - Gupta, Banshi D. A1 - Pathak, Anisha A1 - Shrivastav, Anand T1 - Optical Biomedical Diagnostics Using Lab-on-Fiber Technology BT - a review JF - Photonics : open access journal N2 - Point-of-care and in-vivo bio-diagnostic tools are the current need for the present critical scenarios in the healthcare industry. The past few decades have seen a surge in research activities related to solving the challenges associated with precise on-site bio-sensing. Cutting-edge fiber optic technology enables the interaction of light with functionalized fiber surfaces at remote locations to develop a novel, miniaturized and cost-effective lab on fiber technology for bio-sensing applications. The recent remarkable developments in the field of nanotechnology provide innumerable functionalization methodologies to develop selective bio-recognition elements for label free biosensors. These exceptional methods may be easily integrated with fiber surfaces to provide highly selective light-matter interaction depending on various transduction mechanisms. In the present review, an overview of optical fiber-based biosensors has been provided with focus on physical principles used, along with the functionalization protocols for the detection of various biological analytes to diagnose the disease. The design and performance of these biosensors in terms of operating range, selectivity, response time and limit of detection have been discussed. In the concluding remarks, the challenges associated with these biosensors and the improvement required to develop handheld devices to enable direct target detection have been highlighted. KW - fiber optic sensors KW - synthesis KW - interferometry KW - fluorescence KW - SERS KW - SPR KW - immunosensors KW - enzymatic sensors KW - molecular imprinted polymers Y1 - 2022 U6 - https://doi.org/10.3390/photonics9020086 SN - 2304-6732 VL - 9 IS - 2 PB - MDPI CY - Basel ER - TY - THES A1 - Martínez Guajardo, Alejandro T1 - New zwitterionic polymers for antifouling applications T1 - Neue zwitterionische Polymere für Antifouling-Anwendungen N2 - The remarkable antifouling properties of zwitterionic polymers in controlled environments are often counteracted by their delicate mechanical stability. In order to improve the mechanical stabilities of zwitterionic hydrogels, the effect of increased crosslinker densities was thus explored. In a first approach, terpolymers of zwitterionic monomer 3-[N -2(methacryloyloxy)ethyl-N,N-dimethyl]ammonio propane-1-sulfonate (SPE), hydrophobic monomer butyl methacrylate (BMA), and photo-crosslinker 2-(4-benzoylphenoxy)ethyl methacrylate (BPEMA) were synthesized. Thin hydrogel coatings of the copolymers were then produced and photo-crosslinked. Studies of the swollen hydrogel films showed that not only the mechanical stability but also, unexpectedly, the antifouling properties were improved by the presence of hydrophobic BMA units in the terpolymers. Based on the positive results shown by the amphiphilic terpolymers and in order to further test the impact that hydrophobicity has on both the antifouling properties of zwitterionic hydrogels and on their mechanical stability, a new amphiphilic zwitterionic methacrylic monomer, 3-((2-(methacryloyloxy)hexyl)dimethylammonio)propane-1-sulfonate (M1), was synthesized in good yields in a multistep synthesis. Homopolymers of M1 were obtained by free-radical polymerization. Similarly, terpolymers of M1, zwitterionic monomer SPE, and photo-crosslinker BPEMA were synthesized by free-radical copolymerization and thoroughly characterized, including its solubilities in selected solvents. Also, a new family of vinyl amide zwitterionic monomomers, namely 3-(dimethyl(2-(N -vinylacetamido)ethyl)ammonio)propane-1-sulfonate (M2), 4-(dimethyl(2-(N-vinylacetamido)ethyl)ammonio)butane-1-sulfonate (M3), and 3-(dimethyl(2-(N-vinylacetamido)ethyl)ammonio)propyl sulfate (M4), together with the new photo-crosslinker 4-benzoyl-N-vinylbenzamide (M5) that is well-suited for copolymerization with vinylamides, are introduced within the scope of the present work. The monomers are synthesized with good yields developing a multistep synthesis. Homopolymers of the new vinyl amide zwitterionic monomers are obtained by free-radical polymerization and thoroughly characterized. From the solubility tests, it is remarkable that the homopolymers produced are fully soluble in water, evidence of their high hydrophilicity. Copolymerization of the vinyl amide zwitterionic monomers, M2, M3, and M4 with the vinyl amide photo-crosslinker M5 proved to require very specific polymerization conditions. Nevertheless, copolymers were successfully obtained by free-radical copolymerization under appropriate conditions. Moreover, in an attempt to mitigate the intrinsic hydrophobicity introduced in the copolymers by the photo-crosslinkers, and based on the proven affinity of quaternized diallylamines to copolymerize with vinyl amides, a new quaternized diallylamine sulfobetaine photo-crosslinker 3-(diallyl(2-(4-benzoylphenoxy)ethyl)ammonio)propane-1-sulfonate (M6) is synthesized. However, despite a priori promising copolymerization suitability, copolymerization with the vinyl amide zwitterionic monomers could not be achieved. N2 - Die hervorragenden Antifouling-Eigenschaften zwitterionischer Polymere in kontrollierten Bedingungen werden häufig durch ihre geringe mechanische Stabilität beeinträchtigt. Um die mechanische Eigenschaften zwitterionischer Hydrogele zu verbessern, wurde daher der Effekt einer erhöhten Vernetzungsdichte untersucht. In einem ersten Ansatz wurden Terpolymere aus dem zwitterionischen Monomer 3-[N -2(Methacryloyloxy)ethyl-N,N-dimethyl]ammonio propan-1-sulfonat (SPE), dem hydrophoben Monomer Butylmethacrylat (BMA) und dem Photovernetzer 2-(4-Benzoylphenoxy)ethylmethacrylat (BPEMA) synthetisiert. Daraufhin wurden dünne Beschichtungen der Copolymere hergestellt und photovernetzt. Die Untersuchung der gequollenen Hydrogelfilme zeigte, dass nicht nur die mechanischen Eigenschaften, sondern überraschenderweise auch die Antifouling-Eigenschaften der Hydrogele durch den Einbau von hydrophoben BMA-Einheiten in die Terpolymere verbessert wurden. Aufgrund der positiven Ergebnisse der amphiphilen Terpolymere und um die Auswirkungen der Hydrophobie sowohl auf die Antifouling- als auch auf die mechanische Eigenschaften der zwitterionischen Hydrogele zu testen, wurde ein neues amphiphiles zwitterionisches Methacrylat, nämlich 3-((2-(Methacryloyloxy)hexyl)dimethylammonio)propan-1-sulfonat (M1), in guter Ausbeute synthetisiert. Homopolymere von M1 wurden durch radikalische Polymerisation erhalten. In ähnlicher Weise wurden Terpolymere aus M1, dem zwitterionischen Monomer SPE und dem Photovernetzer BPEMA durch radikalische Copolymerisation synthetisiert und gründlich charakterisiert, einschließlich ihrer Löslichkeiten in ausgewählten Lösungsmitteln. Außerdem wurde im Rahmen der vorliegenden Arbeit eine neue Familie von zwitterionischen Vinylamidmonomeren, nämlich 3-(Dimethyl(2-(N-vinylacetamido)ethyl)ammonio)propan-1-sulfonat (M2), 4-(Dimethyl(2-(N -vinylacetamido)ethyl)ammonio)butan-1-sulfonat (M3) und 3-(Dimethyl(2-(N -vinylacetamido)ethyl)ammonio)propylsulfat (M4), zusammen mit einem geeigneten Vinylamid-Photovernetzer, nämlich 4-Benzoyl-N -vinylbenzamide (M5) entwickelt. Die Monomere wurden in einer Mehrstufen-Synthese mit guten Ausbeuten synthetisiert. Homopolymere der neuen zwitterionischen Vinylamidmonomere wurden durch radikalische Polymerisation erhalten und eingehend charakterisiert. Die Löslichkeitstests zeigen, dass die hergestellten Homopolymere bemerkenswerterweise vollständig in reinem Wasser löslich sind, was ihre hohe Hydrophilie beweist. Die Copolymerisation der zwitterionischen Vinylamidmonomere M2, M3 und M4 mit dem Vinylamid-Photovernetzer M5 erwies sich als schwierig. Die Copolymere lassen sich dennoch unter sehr spezifische Bedingungen durch radikalische Copolymerisation herstellen. Des Weiteren, um die durch die Photovernetzer in die Copolymere eingebrachte inhärente Hydrophobie zu mindern und aufgrund ihrer nachgewiesenen Affinität zur Copolymerisation mit Vinylamiden, wurde ein neuer quaternisierter Diallylaminsulfobetain-Photovernetzer 3-(Diallyl(2-(4-benzoylphenoxy)ethyl)ammonio)propan-1-sulfonat (M6) synthetisiert. Trotz a priori vielversprechender Copolymerisationseignung konnte jedoch keine Copolymerisation mit den zwitterionischen Vinylamidmonomeren erreicht werden. KW - antifouling KW - Antifouling KW - copolymers KW - Copolymere KW - hydrogels KW - Hydrogele KW - zwitterions KW - Zwitterionen KW - synthesis KW - Synthese Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-626820 ER - TY - THES A1 - Kwesiga, George T1 - Synthesis of isoflavonoids from African medicinal plants with activity against tropical infectious diseases T1 - Synthese von Isoflavonoiden aus afrikanischen Heilpflanzen mit Wirkung gegen tropische Infektionskrankheiten N2 - Two approaches for the synthesis of prenylated isoflavones were explored: the 2,3-oxidative rearrangement/cross metathesis approach, using hypervalent iodine reagents as oxidants and the Suzuki-Miyaura cross-coupling/cross metathesis approach. Three natural prenylated isoflavones: 5-deoxy-3′-prenylbiochanin A (59), erysubin F (61) and 7-methoxyebenosin (64), and non-natural analogues: 7,4′-dimethoxy-8,3′-diprenylisoflavone (126j) and 4′-hydroxy-7-methoxy-8,3′-diprenylisoflavone (128) were synthesized for the first time via the 2,3-oxidative rearrangement/cross metathesis approach, using mono- or diallylated flavanones as key intermediates. The reaction of flavanones with hypervalent iodine reagents afforded isoflavones via a 2,3-oxidative rearrangement and the corresponding flavone isomers via a 2,3-dehydrogenation. This afforded the synthesis of 7,4′-dimethoxy-8-prenylflavone (127g), 7,4′-dimethoxy-8,3′-diprenylflavone (127j), 7,4′-dihydroxy-8,3′-diprenylflavone (129) and 4′-hydroxy-7-methoxy-8,3′-diprenylflavone (130), the non-natural regioisomers of 7-methoxyebenosin, 126j, erysubin F and 128 respectively. Three natural prenylated isoflavones: 3′-prenylbiochanin A (58), neobavaisoflavone (66) and 7-methoxyneobavaisoflavone (137) were synthesized for the first time using the Suzuki-Miyaura cross-coupling/cross metathesis approach. The structures of 3′-prenylbiochanin A (58) and 5-deoxy-3′-prenylbiochanin A (59) were confirmed by single crystal X-ray diffraction analysis. The 2,3-oxidative rearrangement approach appears to be limited to the substitution pattern on both rings A and B of the flavanone while the Suzuki-Miyaura cross-coupling approach appears to be the most suitable for the synthesis of simple isoflavones or prenylated isoflavones whose prenyl substituents or allyl groups, the substituents that are essential precursors for the prenyl side chains, can be regioselectively introduced after the construction of the isoflavone core. The chalcone-flavanone hybrids 146, 147 and 148, hybrids of the naturally occurring bioactive flavanones liquiritigenin-7-methyl ether, liquiritigenin and liquiritigenin-4′-methyl ether respectively were also synthesized for the first time, using Matsuda-Heck arylation and allylic/benzylic oxidation as key steps. The intermolecular interactions of 5-deoxy-3′-prenylbiochanin A (59) and its two closely related precursors 106a and 106b was investigated by single crystal and Hirshfeld surface analyses to comprehend their different physicochemical properties. The results indicate that the presence of strong intermolecular O-H···O hydrogen bonds and an increase in the number of π-stacking interactions increases the melting point and lowers the solubility of isoflavone derivatives. However, the strong intermolecular O-H···O hydrogen bonds have a greater effect than the π-stacking interactions. 5-Deoxy-3′-prenylbiochanin A (59), erysubin F (61) and 7,4′-dihydroxy-8,3′-diprenylflavone (129), were tested against three bacterial strains and one fungal pathogen. All the three compounds were inactive against Salmonella enterica subsp. enterica (NCTC 13349), Escherichia coli (ATCC 25922), and Candida albicans (ATCC 90028), with MIC values greater than 80.0 μM. The diprenylated isoflavone erysubin F (61) and its flavone isomer 129 showed in vitro activity against methicillin-resistant Staphylococcus aureus (MRSA, ATCC 43300) at MIC values of 15.4 and 20.5 μM, respectively. 5-Deoxy-3′-prenylbiochanin A (59) was inactive against this MRSA strain. Erysubin F (61) and its flavone isomer 129 could serve as lead compounds for the development of new alternative drugs for the treatment of MRSA infections. N2 - Ziel dieser Studie war es, aus afrikanischen Heilpflanzen isolierte Naturstoffe künstlich herzustellen, die zur Behandlung tropischer Infektionskrankheiten wie Malaria und bakterieller Infektionen eingesetzt werden, um Schlüsselsubstanzen für die Entwicklung neuer Medikamente zu identifizieren. Sechs Naturstoffe aus afrikanischen Heilpflanzen wie dem Korallenbaum (Erythrina-species) wurden erstmals künstlich hergestellt. Bei der Herstellung dieser Naturstoffe wurden auch sechs weitere verwandte nicht-natürliche Analoga hergestellt. Zwei Naturstoffe (5-Deoxy-3′-prenylbiochanin A und Erysubin F) aus dem Korallenbaum (Erythrina sacleuxii) und eine verwandte nicht-natürliche Substanz wurden auf ihre antimikrobielle Aktivität gegen drei Bakterienstämme und einen Pilzstamm getestet. Alle drei Substanzen waren nicht wirksam gegen Escherichia coli, ein Bakterium, das Harnwegsinfektionen und Durchfall verursacht; Salmonella entrica, das Typhus verursacht, und Candida albicans, das Candidiasis verursacht. Erysubin F und sein nicht-natürliches Analogon waren sehr aktiv gegen Methicillin-resistente Staphylococcus aureus (MRSA), ein Bakterium, das hauptsächlich in sehr geringen Konzentrationen Hautinfektionen verursacht. 5-Deoxy-3'-prenylbiochanin A war gegen diesen MRSA-Stamm nicht aktiv. Erysubin F und sein nicht-natürliches Analogon könnten als Schlüsselsubstanzen für die Entwicklung eines neuen Medikaments gegen Infektionen durch MRSA dienen. KW - synthesis KW - isoflavonoids KW - African medicinal plants KW - tropical infectious diseases KW - Afrikanische Heilpflanzen KW - Isoflavonoide KW - Synthese KW - tropische Infektionskrankheiten Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-559069 ER - TY - THES A1 - Lood, Kajsa T1 - Stereoselective Construction of C-C Double Bonds via Olefin Metathesis: From Tethered Reactions to Water-Soluble Catalysts for Stereoretentive Metathesis T1 - Stereoselektiver Aufbau von C-C-Doppelbindungen durch Olefinmetathese: Von gebundenen Reaktionen zu wasserlöslichen Katalysatoren für die stereoretentive Metathese N2 - Natural products have proved to be a major resource in the discovery and development of many pharmaceuticals that are in use today. There is a wide variety of biologically active natural products that contain conjugated polyenes or benzofuran structures. Therefore, new synthetic methods for the construction of such building blocks are of great interest to synthetic chemists. The recently developed one-pot tethered ring-closing metathesis approach allows for the formation of Z,E-dienoates in high stereoselectivity. The extension of this method with a Julia-Kocienski olefination protocol would allow for the formation of conjugated trienes in a stereoselective manner. This strategy was applied in the total synthesis of conjugated triene containing (+)-bretonin B. Additionally, investigations of cross metathesis using methyl substituted olefins were pursued. This methodology was applied, as a one-pot cross metathesis/ring-closing metathesis sequence, in the total synthesis of benzofuran containing 7-methoxywutaifuranal. Finally, the design and synthesis of a catalyst for stereoretentive metathesis in aqueous media was investigated. N2 - Naturstoffe haben sich als wichtige Ressource für die Entdeckung und Entwicklung zahlreicher Arzneimittel erwiesen, die heute verwendet werden. Es gibt eine Vielzahl biologisch aktiver Naturstoffe, die konjugierte Polyene oder Benzofuranstrukturen enthalten. Daher sind neue Synthesemethoden für die Herstellung solcher Bausteine für synthetische Chemiker von großem Interesse. Der kürzlich entwickelte Ein-Topf-Ansatz der tethered ring-closing metathesis ermöglicht die Bildung von Z,E-Dienoaten in hoher Stereoselektivität. Die Erweiterung dieser Methode mit einem Julia-Kocienski-Olefinierungsprotokoll würde die Bildung von konjugierten Trienen in stereoselektiver Weise ermöglichen. Diese Strategie wurde bei der Totalsynthese von konjugierten Trienen, die (+)-Bretonin B enthalten, angewandt. Außerdem wurden Untersuchungen zur Kreuzmetathese mit methylsubstituierten Olefinen durchgeführt. Diese Methodik wurde als Ein-Topf-Kreuzmetathese/Ringschluss-Metathese-Sequenz in der Totalsynthese von benzofuranhaltigem 7-Methoxywutaifuranal angewendet. Schließlich wurde die Entwicklung und Synthese eines Katalysators für die stereoretentive Metathese in wässrigen Medien untersucht. KW - Olefin metathesis KW - synthesis KW - organic chemistry KW - catalysts KW - Olefin Metathese KW - Synthese KW - organische Chemie KW - Katalysatoren Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-539142 ER - TY - GEN A1 - Laschewsky, André T1 - Structures and synthesis of zwitterionic polymers T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - The structures and synthesis of polyzwitterions ("polybetaines") are reviewed, emphasizing the literature of the past decade. Particular attention is given to the general challenges faced, and to successful strategies to obtain polymers with a true balance of permanent cationic and anionic groups, thus resulting in an overall zero charge. Also, the progress due to applying new methodologies from general polymer synthesis, such as controlled polymerization methods or the use of "click" chemical reactions is presented. Furthermore, the emerging topic of responsive ("smart") polyzwitterions is addressed. The considerations and critical discussions are illustrated by typical examples. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1043 KW - review KW - polyzwitterion KW - polyampholyte KW - zwitterionic group KW - betaine KW - synthesis KW - monomer KW - polymerization KW - post-polymerization modification Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-476167 SN - 1866-8372 IS - 1043 ER - TY - JOUR A1 - Linker, Torsten T1 - Addition of Heteroatom Radicals to endo-Glycals JF - Chemistry N2 - Radical reactions have found many applications in carbohydrate chemistry, especially in the construction of carbon–carbon bonds. The formation of carbon–heteroatom bonds has been less intensively studied. This mini-review will summarize the efforts to add heteroatom radicals to unsaturated carbohydrates like endo-glycals. Starting from early examples, developed more than 50 years ago, the importance of such reactions for carbohydrate chemistry and recent applications will be discussed. After a short introduction, the mini-review is divided in sub-chapters according to the heteroatoms halogen, nitrogen, phosphorus, and sulfur. The mechanisms of radical generation by chemical or photochemical processes and the subsequent reactions of the radicals at the 1-position will be discussed. This mini-review cannot cover all aspects of heteroatom-centered radicals in carbohydrate chemistry, but should provide an overview of the various strategies and future perspectives KW - radicals KW - carbohydrates KW - heteroatoms KW - synthesis Y1 - 2020 U6 - https://doi.org/10.3390/chemistry2010008 SN - 2624-8549 VL - 2 IS - 1 SP - 80 EP - 92 PB - MDPI CY - Basel ER - TY - GEN A1 - Linker, Torsten T1 - Addition of Heteroatom Radicals to endo-Glycals T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - Radical reactions have found many applications in carbohydrate chemistry, especially in the construction of carbon–carbon bonds. The formation of carbon–heteroatom bonds has been less intensively studied. This mini-review will summarize the efforts to add heteroatom radicals to unsaturated carbohydrates like endo-glycals. Starting from early examples, developed more than 50 years ago, the importance of such reactions for carbohydrate chemistry and recent applications will be discussed. After a short introduction, the mini-review is divided in sub-chapters according to the heteroatoms halogen, nitrogen, phosphorus, and sulfur. The mechanisms of radical generation by chemical or photochemical processes and the subsequent reactions of the radicals at the 1-position will be discussed. This mini-review cannot cover all aspects of heteroatom-centered radicals in carbohydrate chemistry, but should provide an overview of the various strategies and future perspectives T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 873 KW - radicals KW - carbohydrates KW - heteroatoms KW - synthesis Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-459970 SN - 1866-8372 IS - 873 ER - TY - JOUR A1 - Hildebrand, Viet A1 - Laschewsky, André A1 - Zehm, Daniel T1 - On the hydrophilicity of polyzwitterion poly (N, N-dimethyl-N(3-(methacrylamido)propyl)ammoniopropane sulfonate) in water, deuterated water, and aqueous salt solutions JF - Journal of biomaterials science : Polymer edition KW - polyzwitterion KW - sulfobetaine KW - synthesis KW - fluorescence label KW - upper critical solution temperature KW - isotope effect KW - anti-polyelectrolyte effect Y1 - 2014 U6 - https://doi.org/10.1080/09205063.2014.939918 SN - 0920-5063 SN - 1568-5624 VL - 25 IS - 14-15 SP - 1602 EP - 1618 PB - Routledge, Taylor & Francis Group CY - Abingdon ER - TY - JOUR A1 - Laschewsky, André T1 - Structures and synthesis of zwitterionic polymers JF - Polymers N2 - The structures and synthesis of polyzwitterions ("polybetaines") are reviewed, emphasizing the literature of the past decade. Particular attention is given to the general challenges faced, and to successful strategies to obtain polymers with a true balance of permanent cationic and anionic groups, thus resulting in an overall zero charge. Also, the progress due to applying new methodologies from general polymer synthesis, such as controlled polymerization methods or the use of "click" chemical reactions is presented. Furthermore, the emerging topic of responsive ("smart") polyzwitterions is addressed. The considerations and critical discussions are illustrated by typical examples. KW - review KW - polyzwitterion KW - polyampholyte KW - zwitterionic group KW - betaine KW - synthesis KW - monomer KW - polymerization KW - post-polymerization modification Y1 - 2014 U6 - https://doi.org/10.3390/polym6051544 SN - 2073-4360 VL - 6 IS - 5 SP - 1544 EP - 1601 PB - MDPI CY - Basel ER - TY - JOUR A1 - Herfurth, Christoph A1 - Voll, Dominik A1 - Buller, Jens A1 - Weiss, Jan A1 - Barner-Kowollik, Christopher A1 - Laschewsky, André T1 - Radical addition fragmentation chain transfer (RAFT) polymerization of ferrocenyl (meth)acrylates JF - Journal of polymer science : A, Polymer chemistry N2 - We report on the controlled free radical homopolymerization of 1-ferrocenylethyl acrylate as well as of three new ferrocene bearing monomers, namely 4-ferrocenylbutyl acrylate, 2-ferrocenylamido-2-methylpropyl acrylate, and 4-ferrocenylbutyl methacrylate, by the RAFT technique. For comparison, the latter monomer was polymerized using ATRP, too. The ferrocene containing monomers were found to be less reactive than their analogues free of ferrocene. The reasons for the low polymerizability are not entirely clear. As the addition of free ferrocene to the reaction mixture did not notably affect the polymerizations, sterical hindrance by the bulky ferrocene moiety fixed on the monomers seems to be the most probable explanation. Molar masses found for 1-ferrocenylethyl acrylate did not exceed 10,000 g mol(-1), while for 4-ferrocenylbutyl (meth) acrylate molar masses of 15,000 g mol(-1) could be obtained. With PDIs as low as 1.3 in RAFT polymerization of the monomers, good control over the polymerization was achieved. KW - ferrocene KW - living radical polymerization (LRP) KW - monomers KW - radical addition fragmentation chain transfer (RAFT) KW - radical polymerization KW - redox polymers KW - synthesis Y1 - 2012 U6 - https://doi.org/10.1002/pola.24994 SN - 0887-624X VL - 50 IS - 1 SP - 108 EP - 118 PB - Wiley-Blackwell CY - Malden ER - TY - THES A1 - Steeples, Elliot T1 - Amino acid-derived imidazolium salts: platform molecules for N-Heterocyclic carbene metal complexes and organosilica materials T1 - Imidazolium-Salze aus Aminosäure: Bausteine für N-Heterozyklische-Carben Metallkomplexe und Organosilicamaterialien N2 - In the interest of producing functional catalysts from sustainable building-blocks, 1, 3-dicarboxylate imidazolium salts derived from amino acids were successfully modified to be suitable as N-Heterocyclic carbene (NHC) ligands within metal complexes. Complexes of Ag(I), Pd(II), and Ir(I) were successfully produced using known procedures using ligands derived from glycine, alanine, β-alanine and phenylalanine. The complexes were characterized in solid state using X-Ray crystallography, which allowed for the steric and electronic comparison of these ligands to well-known NHC ligands within analogous metal complexes. The palladium complexes were tested as catalysts for aqueous-phase Suzuki-Miyaura cross-coupling. Water-solubility could be induced via ester hydrolysis of the N-bound groups in the presence of base. The mono-NHC–Pd complexes were seen to be highly active in the coupling of aryl bromides with phenylboronic acid; the active catalyst of which was determined to be mostly Pd(0) nanoparticles. Kinetic studies determined that reaction proceeds quickly in the coupling of bromoacetophenone, for both pre-hydrolyzed and in-situ hydrolysis catalyst dissolution. The catalyst could also be recycled for an extra run by simply re-using the aqueous layer. The imidazolium salts were also used to produce organosilica hybrid materials. This was attempted via two methods: by post-grafting onto a commercial organosilica, and co-condensation of the corresponding organosilane. The co-condensation technique harbours potential for the production of solid-support catalysts. N2 - Um Katalysatoren aus nachhaltigen Chemikalien herzustellen, wurden 1,3-Dicarbonsäure-Imidazolium-Salze, welche aus Aminosäuren synthetisiert wurden als N-heterozyklische-Carben-Liganden (NHC) in Metallkomplexen modifiziert. Liganden aus Glycin, Alanin, β-Alanin und Phenylalanin wurden wiederum genutzt, um Metallkomplexe aus Silber(I), Palladium(II) und Iridium(I) darzustellen. Alle Komplexverbindungen wurden mit Röntgenkristallographie charakterisiert. Die Palladiumkomplexe wurden als Katalysatoren in der Suzuki-Miyaura Reaktion eingesetzt. Durch zusätzliche Hydrolyse der Ester-Gruppen konnte eine gute Wasserlöslichkeit erreicht werden. Die hohe Aktivität der Mono-NHC–Palladium-Komplexe konnte bei der Kupplung von Arylbromiden mit Phenylboronsäuren aufgezeigt werden. Die aktive Spezies wurde hauptsächlich Pd(0) Nanopartikeln zugeschrieben. Nach erfolgreichem Recycling konnte der Katalysator noch einmal wiederverwendet werden. Die Imidazolium-Salze wurden ebenfalls herangezogen, um Organosilicamaterialien zu synthetisieren. Die Herstellung wurde durch zwei Methoden erreicht. Zum einen durch nachträgliches Aufbringen auf kommerzielle Siliziummaterialien, sowie durch Co-Kondensation auf das entsprechende Organosilan. Diese Co-Kondensation birgt Potential zur Herstellung von festen Trägerkatalysatoren. KW - synthesis KW - Synthese KW - sustainable chemistry KW - nachhaltige Chemie KW - organometallics KW - Metallorganischen KW - water KW - Wasser Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-101861 ER -