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Metal Semiconductor Core-shell Nanostructures for Energy and Environmental Applications, Gupta, Raju Kumar


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Автор: Gupta, Raju Kumar   (Раджу Кумар Гупта)
Название:  Metal Semiconductor Core-shell Nanostructures for Energy and Environmental Applications
Перевод названия: Раджу Кумар Гупта: Металл-полупроводниковые наноструктуры с ядром и оболочкой для энергетики и окруж
ISBN: 9780323449229
Издательство: Elsevier Science
Классификация:
ISBN-10: 0323449220
Обложка/Формат: Hardback
Страницы: 256
Вес: 0.64 кг.
Дата издания: 01.06.2017
Серия: Micro & nano technologies
Язык: English
Размер: 199 x 242 x 17
Читательская аудитория: Professional & vocational
Ссылка на Издательство: Link
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Поставляется из: Европейский союз
Описание:

Metal Semiconductor Core-Shell Nanostructures for Energy and Environmental Applications provides a concise, scholarly overview of current research into the characterization of metal semiconductor core-shell nanostructures; the book shows how their properties can be best used in energy and environmental applications, particularly for solar cell and catalysis application. Coverage is also given to the effect of metal nanoparticle for charge generation or charge separation. The book is a valuable resource for academic researchers working in the areas of nanotechnology, sustainable energy and chemical engineering, and is also of great use to engineers working in photovoltaic and pollution industries.




1D Oxide Nanostructures Obtained by Sol-Gel and Hydrothermal Methods

Автор: Anastasescu
Название: 1D Oxide Nanostructures Obtained by Sol-Gel and Hydrothermal Methods
ISBN: 3319329863 ISBN-13(EAN): 9783319329864
Издательство: Springer
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Цена: 7836.00 р.
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Описание: This book presents wet chemical sol-gel and hydrothermal methods for 1D oxide nanostructure preparation. These methods represent an attractive route to multifunctional nanomaterials synthesis, as they are versatile, inexpensive and, thus, appropriate for obtaining a wide range of oxide materials with tailored morphology and properties. Three specific oxides (SiO2, TiO2, ZnO) are discussed in detail in order to illustrate the principle of the sol-gel and hydrothermal preparation of 1D oxide nanostructures. Other oxides synthesized via this method are also briefly presented. Throughout the book, the correlation between the tubular structure and the physico-chemical properties of these materials is highlighted. 1D oxide nanostructures exhibit interesting optical and electrical properties, due to their confined morphology. In addition, a well-defined geometry can be associated with chemically active species. For example, the pure SiO2 nanotubes presented a slight photocatalytic activity, while the Pt-doped SiO2 tubular materials act as microreactors in catalytic reactions. In the case of titania and titanate nanotubes, large specific surface area and pore volume, ion-exchange ability, enhanced light absorption, and fast electron-transport capability have attracted significant research interest. The chemical and physical modifications (microwave assisted hydrothermal methods) discussed here improve the formation kinetics of the nanotubes. The ZnO nanorods/tubes were prepared as random particles or as large areas of small, oriented 1D ZnO nanostructures on a variety of substrates. In the latter case a sol-gel layer is deposited on the substrate prior to the hydrothermal preparation. Using appropriate dopants, coatings of ZnO nanorods with controlled electrical behavior can be obtained.


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