TY - JOUR A1 - Gu, Sasa A1 - Risse, Sebastian A1 - Lu, Yan A1 - Ballauff, Matthias T1 - Mechanism of the oxidation of 3,3′,5,5′-tetramethylbenzidine catalyzed by peroxidase-like Pt nanoparticles immobilized in spherical polyelectrolyte brushes BT - a kinetic study JF - ChemPhysChem N2 - Experimental and kinetic modelling studies are presented to investigate the mechanism of 3,3 ',5,5 '-tetramethylbenzidine (TMB) oxidation by hydrogen peroxide (H2O2) catalyzed by peroxidase-like Pt nanoparticles immobilized in spherical polyelectrolyte brushes (SPB-Pt). Due to the high stability of SPB-Pt colloidal, this reaction can be monitored precisely in situ by UV/VIS spectroscopy. The time-dependent concentration of the blue-colored oxidation product of TMB expressed by different kinetic models was used to simulate the experimental data by a genetic fitting algorithm. After falsifying the models with abundant experimental data, it is found that both H2O2 and TMB adsorb on the surface of Pt nanoparticles to react, indicating that the reaction follows the Langmuir-Hinshelwood mechanism. A true rate constant k, characterizing the rate-determining step of the reaction and which is independent on the amount of catalysts used, is obtained for the first time. Furthermore, it is found that the product adsorbes strongly on the surface of nanoparticles, thus inhibiting the reaction. The entire analysis provides a new perspective to study the catalytic mechanism and evaluate the catalytic activity of the peroxidase-like nanoparticles. KW - kinetics KW - nanoparticles KW - reaction mechanisms KW - spherical polyelectrolyte KW - brushes KW - UV KW - vis spectroscopy Y1 - 2019 U6 - https://doi.org/10.1002/cphc.201901087 SN - 1439-4235 SN - 1439-7641 VL - 21 IS - 5 SP - 450 EP - 458 PB - Wiley-VCH CY - Weinheim ER - TY - THES A1 - Fortes Martín, Rebeca T1 - Water-in-oil microemulsions as soft-templates to mediate nanoparticle interfacial assembly into hybrid nanostructures T1 - Wasser-in-Öl Mikroemulsionen als Soft-Templat für die Grenzfläche-Anordnung von Nanopartikeln in hybride Nanostrukturen T1 - Microemulsiones de aceite-en-agua como estructuras templadas blandas para el ensamblaje de nanoparticulas en su interfase dando nanoestructuras híbridas N2 - Hybrid nanomaterials offer the combination of individual properties of different types of nanoparticles. Some strategies for the development of new nanostructures in larger scale rely on the self-assembly of nanoparticles as a bottom-up approach. The use of templates provides ordered assemblies in defined patterns. In a typical soft-template, nanoparticles and other surface-active agents are incorporated into non-miscible liquids. The resulting self-organized dispersions will mediate nanoparticle interactions to control the subsequent self-assembly. Especially interactions between nanoparticles of very different dispersibility and functionality can be directed at a liquid-liquid interface. In this project, water-in-oil microemulsions were formulated from quasi-ternary mixtures with Aerosol-OT as surfactant. Oleyl-capped superparamagnetic iron oxide and/or silver nanoparticles were incorporated in the continuous organic phase, while polyethyleneimine-stabilized gold nanoparticles were confined in the dispersed water droplets. Each type of nanoparticle can modulate the surfactant film and the inter-droplet interactions in diverse ways, and their combination causes synergistic effects. Interfacial assemblies of nanoparticles resulted after phase-separation. On one hand, from a biphasic Winsor type II system at low surfactant concentration, drop-casting of the upper phase afforded thin films of ordered nanoparticles in filament-like networks. Detailed characterization proved that this templated assembly over a surface is based on the controlled clustering of nanoparticles and the elongation of the microemulsion droplets. This process offers versatility to use different nanoparticle compositions by keeping the surface functionalization, in different solvents and over different surfaces. On the other hand, a magnetic heterocoagulate was formed at higher surfactant concentration, whose phase-transfer from oleic acid to water was possible with another auxiliary surfactant in ethanol-water mixture. When the original components were initially mixed under heating, defined oil-in-water, magnetic-responsive nanostructures were obtained, consisting on water-dispersible nanoparticle domains embedded by a matrix-shell of oil-dispersible nanoparticles. Herein, two different approaches were demonstrated to form diverse hybrid nanostructures from reverse microemulsions as self-organized dispersions of the same components. This shows that microemulsions are versatile soft-templates not only for the synthesis of nanoparticles, but also for their self-assembly, which suggest new approaches towards the production of new sophisticated nanomaterials in larger scale. N2 - Hybride Nanomaterialen ermöglichen die Kombination von individuellen Eigenschaften jeder Art von Nanopartikeln. Einige Strategien für die Herstellung neuer großskaliger Nanostrukturen beruhen auf der Selbstassemblierung von Nanopartikeln über einen Bottom-up-Ansatz. Die Nutzung von Templatstrukturen ermöglicht Anordnungen in definierten Mustern. In einem typischen Soft-Templat werden Nanopartikel und andere oberflächenaktive Wirkstoffe in nicht-mischbare Flüssigkeiten eingebracht. Die resultierenden selbst-organisierten Dispersionen beeinflussen die Nanopartikel Interaktionen und kontrollieren die nachfolgende Selbstassemblierung. Insbesondere Interaktionen zwischen Nanopartikeln mit sehr unterschiedlicher Dispergierbarkeit und Funktionalität können Interaktionen an einer Flüssig-Flüssig Grenzfläche gerichtet werden. In diesem Forschungsprojekt wurden Wasser-in-Öl Mikroemulsionen aus quasi-ternären Mischungen mit Aerosol-OT als Tensid hergestellt. Oleyl-beschichtete superparamagnetische Eisenoxid und/oder Silber Nanopartikel wurden in der kontinuierlichen Ölphase eingebracht, während die Polyethyleneimin-stabilisierten Gold Nanopartikel in feinverteilte Wassertröpfchen inkorporiert wurden. Jede Sorte von Nanopartikeln kann den Tensidfilm und die Tröpfchen-Interaktionen auf verschiedene Weise beeinflussen, und seine Kombination führt dabei zu synergetischen Effekten. Die Anordnung von Nanopartikeln an der Grenzfläche basiert auf der Phasentrennung. Auf der einen Seite, bildeten sich aus einem zweiphasigen Winsor II System mit niedrigen Tensid Konzentrationen durch Evaporation der oberen Phase dünne Schichten aus geordneten Nanopartikeln in Form von Filament-Netzen aus. Eine detaillierte Charakterisierung zeigte, dass die Filament-artige Strukturierung auf ein kontrolliertes Nanopartikeln-Clustering und auf die Ausdehnung der Mikroemulsions-Tröpfchen zurückzuführen ist. Dieser Prozess eröffnet flexible Einsatzmöglichkeiten für unterschiedliche Nanopartikel Kompositionen, indem die Oberflächenfunktionalisierung in unterschiedlichen Lösungsmitteln erhalten bleibt, und auch für verschiedenen Lösungsmitteln und über verschiedene Flächen. Auf der anderen Seite wurde ein magnetisches Heterokoagulat in höheren Tensid Konzentration hergestellt, dessen Phasentransfer von Ölsäure in Wasser mit einem anderen zusätzlichen Tensid in einer Ethanol-Wasser Mischung ermöglicht wurde. In Abhängigkeit von der Ausgangstemperatur der initialen Komponenten konnten definierte magnetisch-stimulierbare Öl-in-Wasser Nanostrukturen erhaltet werden. Dabei gelang es Wasser-dispergierbare Nanopartikelkompartimente in eine Matrix-Hülle aus Öl-dispergierbaren Nanopartikeln einzubetten. In dieser Arbeit wurden zwei verschiedene Wege aufgezeigt, um hybride Nanostrukturen aus inversen Mikroemulsionen selbst-organisiert herzustellen. Dies belegt, dass Mikroemulsions-Template nicht nur für die Nanopartikel Synthese geeignet sind, sondern auch für die Herstellung filamentartiger, selbstorganisierter Systeme. Es eröffnen sich hiermit neue Zugänge für die selbstorganisierte Strukturierung von Nanopartikeln auf der Mikrometerskala. N2 - Los nanomateriales híbridos ofrecen la combinación de propiedades individuales de diferentes tipos de nanopartículas. Algunas estrategias para el desarrollo de nuevas nanoestructuras en mayor escala se basan en el auto-ensamblaje (self-assembly) de nanopartículas, como una estrategia “de abajo hacia arriba” (bottom-up). El uso de estructuras de plantilla (templates) proporciona ensamblajes ordenados de formas definidas. En una plantilla blanda típica, las nanopartículas y otros agentes de actividad superficial se incorporan en líquidos no miscibles. Esto da lugar a dispersiones auto-organizadas que mediarán las interacciones entre las nanopartículas, para controlar su auto-ensamblaje resultante. Especialmente las interacciones entre nanopartículas de dispersibilidad y funcionalidades muy diferentes pueden ser redirigidas a una interfase líquido-líquido. En este proyecto se formularon microemulsiones de agua-en-aceite a partir de mezclas cuasi-ternarias con Aerosol-OT (docusato de sodio) como tensioactivo. Las nanopartículas cubiertas de ligandos oleicos, de óxido de hierro superparamagnéticas o de plata, se incorporaron en la fase orgánica continua, mientras que las nanopartículas de oro estabilizadas por polietilenimina fueron confinadas en las gotículas de agua dispersas. Cada tipo de nanopartícula puede modular de fomas muy diversas la capa de tensioactivo y las interacciones entre gotículas, y además su combinación resulta en efectos sinérgicos. Los ensamblajes interfase de nanopartículas se obtuvieron bajo procesos de separación entre fases. Por un lado, a partir de un sistema bifásico de Winsor del tipo II con baja concentración del tensioactivo, la deposición y evaporación de una gota sobre una superficie (drop-casting) de la fase superior proporcionó películas finas de nanopartículas ordenadas como redes de filamentos. Su caracterización detallada probó que este ensamblaje por plantilla sobre una superficie se basa en un agrupamiento (clustering) controlado entre nanopartículas y en la elongación de las gotículas de microemulsiones. Este proceso ofrece versatilidad para usar diferentes composiciones de nanopartículas siempre que su funcionalidad en su superficie se mantenga, además de poder usar diferentes disolventes y sobre diferentes superficies. Por otro lado, un heterocoagulado magnético se formó sobre concentraciones más altas del tensioactivo, y su transferencia de fase desde ácido oleico a agua fue posible usando otro tensioactivo auxiliar en una mezcla de agua y etanol. Cuando los componentes iniciales fueron mezclados al principio bajo calentamiento, se obtuvieron nanoestucturas definidas de aceite-en-agua que responden a un imán, las cuales consisten de dominios de nanopartículas dispersibles en agua que se rodean por un embalaje (matrix-shell) de nanopartículas dispersibles en fase oleosa. De este modo, se demostraron dos propuestas para formar diversos tipos de nanoestructuras híbridas a partir de microemulsiones inversas como dispersiones auto-organizadas de unos mismos componentes. Esto demuestra que las microemulsiones constituyen estructuras de plantilla blandas no sólo para la síntesis de nanopartículas, sino también para su auto-ensamblaje, lo que sugiere novedosas estrategias para la producción de nuevos nanomateriales sofisticados en mayor escala. KW - microemulsions KW - nanoparticles KW - surfactants KW - Colloid Chemistry KW - soft-templates KW - nanostructures KW - nanoparticle assembly KW - hybrid nanostructures KW - Kolloidchemie KW - hybride Nanostrukturen KW - Mikroemulsionen KW - Nanopartikeln-Anordnung KW - Nanopartikeln KW - Nanostrukturen KW - Soft-Templaten KW - Tenside KW - Química de Coloides KW - nanoestructuras híbridas KW - microemulsiones KW - ensamblaje de nanopartículas KW - nanopartículas KW - nanoestructuras KW - estructuras templadas blandas KW - tensioactivos Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-571801 ER - TY - JOUR A1 - Keckeis, Philipp A1 - Zeller, Enriko A1 - Jung, Carina A1 - Besirske, Patricia A1 - Kirner, Felizitas A1 - Ruiz-Agudo, Cristina A1 - Schlaad, Helmut A1 - Cölfen, Helmut T1 - Modular toolkit of multifunctional block copoly(2-oxazoline)s for the synthesis of nanoparticles JF - Chemistry - a European journal N2 - Post-polymerization modification provides an elegant way to introduce chemical functionalities onto macromolecules to produce tailor-made materials with superior properties. This concept was adapted to well-defined block copolymers of the poly(2-oxazoline) family and demonstrated the large potential of these macromolecules as universal toolkit for numerous applications. Triblock copolymers with separated water-soluble, alkyne- and alkene-containing segments were synthesized and orthogonally modified with various low-molecular weight functional molecules by copper(I)-catalyzed azide-alkyne cycloaddition (CuAAC) and thiol-ene (TE) click reactions, respectively. Representative toolkit polymers were used for the synthesis of gold, iron oxide and silica nanoparticles. KW - block copolymers KW - click chemistry KW - nanoparticles KW - ring-opening KW - polymerization KW - surfactants Y1 - 2021 U6 - https://doi.org/10.1002/chem.202101327 SN - 0947-6539 SN - 1521-3765 VL - 27 IS - 32 SP - 8283 EP - 8287 PB - Wiley-VCH CY - Weinheim ER - TY - JOUR A1 - Caetano, Daniel L. Z. A1 - Carvalho, Sidney Jurado de A1 - Metzler, Ralf A1 - Cherstvy, Andrey G. T1 - Critical adsorption of multiple polyelectrolytes onto a nanosphere BT - splitting the adsorption-desorption transition boundary JF - Interface : journal of the Royal Society N2 - Employing extensive Monte Carlo computer simulations, we investigate in detail the properties of multichain adsorption of charged flexible polyelectrolytes (PEs) onto oppositely charged spherical nanoparticles (SNPs). We quantify the conditions of critical adsorption-the phase-separation curve between the adsorbed and desorbed states of the PEs-as a function of the SNP surface-charge density and the concentration of added salt. We study the degree of fluctuations of the PE-SNP electrostatic binding energy, which we use to quantify the emergence of the phase subtransitions, including a series of partially adsorbed PE configurations. We demonstrate how the phase-separation adsorption-desorption boundary shifts and splits into multiple subtransitions at low-salt conditions, thereby generalizing and extending the results for critical adsorption of a single PE onto the SNP. The current findings are relevant for finite concentrations of PEs around the attracting SNP, such as the conditions for PE adsorption onto globular proteins carrying opposite electric charges. KW - nanoparticles KW - polyelectrolytes KW - electrostatics KW - critical adsorption KW - phase-transition boundary Y1 - 2020 U6 - https://doi.org/10.1098/rsif.2020.0199 SN - 1742-5689 SN - 1742-5662 VL - 17 IS - 167 PB - Royal Society CY - London ER - TY - JOUR A1 - Ozcelikay, Goksu A1 - Kurbanoglu, Sevinc A1 - Yarman, Aysu A1 - Scheller, Frieder W. A1 - Ozkan, Sibel A. T1 - Au-Pt nanoparticles based molecularly imprinted nanosensor for electrochemical detection of the lipopeptide antibiotic drug Daptomycin JF - Sensors and actuators : B, Chemical N2 - In this work, a novel electrochemical molecularly imprinted polymer (MIP) sensor for the detection of the lipopeptide antibiotic Daptomycin (DAP) is presented which integrates gold decorated platinum nanoparticles (Au-Pt NPs) into the nanocomposite film. The sensor was prepared by electropolymerization of o-phenylenediamine (o-PD) in the presence of DAP using cyclic voltammetry. Cyclic voltammetry and differential pulse voltammetry were applied to follow the changes in the MIP-layer related to rebinding and removal of the target DAP by using the redox marker [Fe(CN)(6)](3-/4-). Under optimized operational conditions, the MIP/Au-Pt NPs/ GCE nanosensor exhibits a linear response in the range of 1-20 pM towards DAP. The limit of detection and limit of quantification were determined to be 0.161pM +/- 0.012 and 0.489pM +/- 0.012, respectively. The sensitivity towards the antibiotics Vancomycin and Erythromycin and the amino acids glycine and tryptophan was below 7 percent as compared with DAP. Moreover, the nanosensor was also successfully used for the detection of DAP in deproteinated human serum samples. KW - molecularly imprinted polymer KW - Daptomycin KW - platinum nanoparticles KW - gold KW - nanoparticles KW - modified electrodes Y1 - 2020 U6 - https://doi.org/10.1016/j.snb.2020.128285 SN - 0925-4005 VL - 320 PB - Elsevier Science CY - Amsterdam ER - TY - JOUR A1 - Metzler, Ralf T1 - Superstatistics and non-Gaussian diffusion JF - The European physical journal special topics N2 - Brownian motion and viscoelastic anomalous diffusion in homogeneous environments are intrinsically Gaussian processes. In a growing number of systems, however, non-Gaussian displacement distributions of these processes are being reported. The physical cause of the non-Gaussianity is typically seen in different forms of disorder. These include, for instance, imperfect "ensembles" of tracer particles, the presence of local variations of the tracer mobility in heteroegenous environments, or cases in which the speed or persistence of moving nematodes or cells are distributed. From a theoretical point of view stochastic descriptions based on distributed ("superstatistical") transport coefficients as well as time-dependent generalisations based on stochastic transport parameters with built-in finite correlation time are invoked. After a brief review of the history of Brownian motion and the famed Gaussian displacement distribution, we here provide a brief introduction to the phenomenon of non-Gaussianity and the stochastic modelling in terms of superstatistical and diffusing-diffusivity approaches. KW - Brownian diffusion KW - anomalous diffusion KW - dynamics KW - kinetic-theory KW - models KW - motion KW - nanoparticles KW - nonergodicity KW - statistics KW - subdiffusion Y1 - 2020 U6 - https://doi.org/10.1140/epjst/e2020-900210-x SN - 1951-6355 SN - 1951-6401 VL - 229 IS - 5 SP - 711 EP - 728 PB - Springer CY - Heidelberg ER - TY - JOUR A1 - Gerecke, Christian A1 - Edlich, Alexander A1 - Giulbudagian, Michael A1 - Schumacher, Fabian A1 - Zhang, Nan A1 - Said, Andre A1 - Yealland, Guy A1 - Lohan, Silke B. A1 - Neumann, Falko A1 - Meinke, Martina C. A1 - Ma, Nan A1 - Calderon, Marcelo A1 - Hedtrich, Sarah A1 - Schaefer-Korting, Monika A1 - Kleuser, Burkhard T1 - Biocompatibility and characterization of polyglycerol-based thermoresponsive nanogels designed as novel drug-delivery systems and their intracellular localization in keratinocytes JF - Nanotoxicology N2 - Novel nanogels that possess the capacity to change their physico-chemical properties in response to external stimuli are promising drug-delivery candidates for the treatment of severe skin diseases. As thermoresponsive nanogels (tNGs) are capable of enhancing penetration through biological barriers such as the stratum corneum and are taken up by keratinocytes of human skin, potential adverse consequences of their exposure must be elucidated. In this study, tNGs were synthesized from dendritic polyglycerol (dPG) and two thermoresponsive polymers. tNG_dPG_tPG are the combination of dPG with poly(glycidyl methyl ether-co-ethyl glycidyl ether) (p(GME-co-EGE)) and tNG_dPG_pNIPAM the one with poly(N-isopropylacrylamide) (pNIPAM). Both thermoresponsive nanogels are able to incorporate high amounts of dexamethasone and tacrolimus, drugs used in the treatment of severe skin diseases. Cellular uptake, intracellular localization and the toxicological properties of the tNGs were comprehensively characterized in primary normal human keratinocytes (NHK) and in spontaneously transformed aneuploid immortal keratinocyte cell line from adult human skin (HaCaT). Laser scanning confocal microscopy revealed fluorescently labeled tNGs entered into the cells and localized predominantly within lysosomal compartments. MTT assay, comet assay and carboxy-H2DCFDA assay, demonstrated neither cytotoxic or genotoxic effects, nor any induction of reactive oxygen species of the tNGs in keratinocytes. In addition, both tNGs were devoid of eye irritation potential as shown by bovine corneal opacity and permeability (BCOP) test and red blood cell (RBC) hemolysis assay. Therefore, our study provides evidence that tNGs are locally well tolerated and underlines their potential for cutaneous drug delivery. KW - Drug delivery KW - nanoparticles KW - particle characterization KW - keratinocytes KW - nanotoxicology Y1 - 2017 U6 - https://doi.org/10.1080/17435390.2017.1292371 SN - 1743-5390 SN - 1743-5404 VL - 11 SP - 267 EP - 277 PB - Routledge, Taylor & Francis Group CY - Abingdon ER - TY - JOUR A1 - Dai, Xiaolin A1 - Mate, Diana M. A1 - Glebe, Ulrich A1 - Garakani, Tayebeh Mirzaei A1 - Körner, Andrea A1 - Schwaneberg, Ulrich A1 - Böker, Alexander T1 - Sortase-mediated ligation of purely artificial building blocks JF - Polymers N2 - Sortase A (SrtA) from Staphylococcus aureus has been often used for ligating a protein with other natural or synthetic compounds in recent years. Here we show that SrtA-mediated ligation (SML) is universally applicable for the linkage of two purely artificial building blocks. Silica nanoparticles (NPs), poly(ethylene glycol) and poly(N-isopropyl acrylamide) are chosen as synthetic building blocks. As a proof of concept, NP-polymer, NP-NP, and polymer-polymer structures are formed by SrtA catalysis. Therefore, the building blocks are equipped with the recognition sequence needed for SrtA reaction-the conserved peptide LPETG-and a pentaglycine motif. The successful formation of the reaction products is shown by means of transmission electron microscopy (TEM), matrix assisted laser desorption ionization-time of flight mass spectrometry (MALDI-ToF MS), and dynamic light scattering (DLS). The sortase catalyzed linkage of artificial building blocks sets the stage for the development of a new approach to link synthetic structures in cases where their synthesis by established chemical methods is complicated. KW - sortase-mediated ligation KW - enzymes KW - block copolymers KW - nanoparticles Y1 - 2018 U6 - https://doi.org/10.3390/polym10020151 SN - 2073-4360 VL - 10 IS - 2 PB - MDPI CY - Basel ER - TY - JOUR A1 - Dey, Pradip A1 - Bergmann, Tobias A1 - Cuellar-Camacho, Jose Luis A1 - Ehrmann, Svenja A1 - Chowdhury, Mohammad Suman A1 - Zhang, Minze A1 - Dahmani, Ismail A1 - Haag, Rainer A1 - Azad, Walid T1 - Multivalent flexible nanogels exhibit broad-spectrum antiviral activity by blocking virus entry JF - ACS nano N2 - The entry process of viruses into host cells is complex and involves stable but transient multivalent interactions with different cell surface receptors. The initial contact of several viruses begins with attachment to heparan sulfate (HS) proteoglycans on the cell surface, which results in a cascade of events that end up with virus entry. The development of antiviral agents based on multivalent interactions to shield virus particles and block initial interactions with cellular receptors has attracted attention in antiviral research. Here, we designed nanogels with different degrees of flexibility based on dendritic polyglycerol sulfate to mimic cellular HS. The designed nanogels are nontoxic and broad-spectrum, can multivalently interact with viral glycoproteins, shield virus surfaces, and efficiently block infection. We also visualized virus-nanogel interactions as well as the uptake of nanogels by the cells through clathrin-mediated endocytosis using confocal microscopy. As many human viruses attach to the cells through HS moieties, we introduce our flexible nanogels as robust inhibitors for these viruses. KW - multivalent KW - herpes simplex virus KW - heparan sulfate KW - nanoparticles KW - click chemistry KW - polyglycerol Y1 - 2018 U6 - https://doi.org/10.1021/acsnano.8b01616 SN - 1936-0851 SN - 1936-086X VL - 12 IS - 7 SP - 6429 EP - 6442 PB - American Chemical Society CY - Washington ER - TY - JOUR A1 - Holland-Moritz, Henry A1 - Graupner, Julia A1 - Möller, Wolfhard A1 - Pacholski, Claudia A1 - Ronning, Carsten T1 - Dynamics of nanoparticle morphology under low energy ion irradiation JF - Nanotechnology N2 - If nanostructures are irradiated with energetic ions, the mechanism of sputtering becomes important when the ion range matches about the size of the nanoparticle. Gold nanoparticles with diameters of similar to 50 nm on top of silicon substrates with a native oxide layer were irradiated by gallium ions with energies ranging from 1 to 30 keV in a focused ion beam system. High resolution in situ scanning electron microscopy imaging permits detailed insights in the dynamics of the morphology change and sputter yield. Compared to bulk-like structures or thin films, a pronounced shaping and enhanced sputtering in the nanostructures occurs, which enables a specific shaping of these structures using ion beams. This effect depends on the ratio of nanoparticle size and ion energy. In the investigated energy regime, the sputter yield increases at increasing ion energy and shows a distinct dependence on the nanoparticle size. The experimental findings are directly compared to Monte Carlo simulations obtained from iradina and TRI3DYN, where the latter takes into account dynamic morphological and compositional changes of the target. KW - ion beam KW - nanoparticles KW - sputtering KW - Monte Carlo KW - in situ Y1 - 2018 U6 - https://doi.org/10.1088/1361-6528/aac36c SN - 0957-4484 SN - 1361-6528 VL - 29 IS - 31 PB - IOP Publ. Ltd. CY - Bristol ER -