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Titlebook: Assemblies of Gold Nanoparticles at Liquid-Liquid Interfaces; From Liquid Optics t Evgeny Smirnov Book 2018 Springer International Publishi

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期刊全称Assemblies of Gold Nanoparticles at Liquid-Liquid Interfaces
期刊简称From Liquid Optics t
影响因子2023Evgeny Smirnov
视频video
发行地址Nominated as an outstanding Ph.D. thesis by the École Polytechnique Fédérale de Lausanne, Switzerland.Shows the self-assembly of gold nanoparticles into nanoparticles films.Investigates the optical, m
学科分类Springer Theses
图书封面Titlebook: Assemblies of Gold Nanoparticles at Liquid-Liquid Interfaces; From Liquid Optics t Evgeny Smirnov Book 2018 Springer International Publishi
影响因子This book is devoted to various aspects of self-assembly of gold nanoparticles at liquid-liquid interfaces and investigation of their properties. It covers primarily two large fields: (i) self-assembly of nanoparticles and optical properties of these assemblies; and (ii) the role of nanoparticles in redox electrocatalysis at liquid-liquid interfaces. The first part aroused from a long-lasting idea to manipulate adsorption of nanoparticles at liquid-liquid with an external electric field to form ‘smart‘ mirrors and/or filters. Therefore, Chapters 3 to 5 are dedicated to explore fundamental aspects of charged nanoparticles self-assembly and to investigate optical properties (extinction and reflectance) in a through manner. Novel tetrathiafulvalene (TTF)-assisted method leads to self-assembly of nanoparticles into cm-scale nanofilms or, so-called, metal liquid-like droplets (MeLLDs) with remarkable optical properties. The second part (Chapters 6 to 8) clarifies the role of nanoparticles in interfacial electron transfer reactions. They demonstrate how nanoparticles are charged and discharged upon equilibration of Fermi levels with redox couples in solution and how it can be used to per
Pindex Book 2018
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Assemblies of Gold Nanoparticles at Liquid-Liquid Interfaces978-3-319-77914-0Series ISSN 2190-5053 Series E-ISSN 2190-5061
发表于 2025-3-22 08:02:57 | 显示全部楼层
Widerstandsverhalten der Einzelkugel,rticles at a liquid–liquid interface. We demonstrate that gold nanoparticles can spontaneously self-assemble at bare propylene carbonate–water interface upon vigorous shaking, due to the extremely low interfacial tension. However, particles are transferred through the interface in the presence of tetrathiafulvalene molecules.
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Widerstandsverhalten der Einzelkugel,rticles at a liquid–liquid interface. We demonstrate that gold nanoparticles can spontaneously self-assemble at bare propylene carbonate–water interface upon vigorous shaking, due to the extremely low interfacial tension. However, particles are transferred through the interface in the presence of te
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Widerstandsverhalten der Einzelkugel,rfacial microinjection method. The surface coverage of the nanofilm was characterized by ion-transfer voltammetry. These gold nanoparticle films represent an ideal model system for studying both the thermodynamic and kinetic aspects of interfacial redox catalysis. The electric polarization of these
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Michael Schäfer,Marcus Heck,Saim Yigiteaction at ITIES was studied experimentally and by computer simulations for a model system. This model system contains . as an organic soluble electron donor and . as a water-soluble electron acceptor. The current results indicate that the ET reaction takes place by a potential independent homogeneo
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