This book focuses on methods for producing nanosilicon, its electronic and optical properties, research methods to characterize its spectral and structural properties, and its possible applications. The book covers the basic properties of semiconductors, gives special attention to the photoluminescence of silicon nanoparticles, and describes methods used for studying and controlling the structure and properties of nanocrystalline silicon. It also explores the practical applications of nanocrystalline silicon, including the use of nanoparticles in sunscreens.
This book focuses on methods for producing nanosilicon, its electronic and optical properties, research methods to characterize its spectral and structural properties, and its possible applications. The book covers the basic properties of semiconductors, gives special attention to the photoluminescence of silicon nanoparticles, and describes methods used for studying and controlling the structure and properties of nanocrystalline silicon. It also explores the practical applications of nanocrystalline silicon, including the use of nanoparticles in sunscreens.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Ischenko, Anatoly A.; Fetisov, Gennady V.; Aslalnov, Leonid A.
Inhaltsangabe
Part I. Some properties of semiconductors - the terminology. Structure and properties of silicon. Porous silicon: luminescent properties. (by V.Y. Timoshenko). Quantum dots.(QDs). Part II . Methods of synthesis, modification of the surface and defining characteristics of nanosilicon. Oxidative processes in powders of nanosilicon. Thin films of silicon nanoparticles deposited from sols. Part III. Methods for investigation and control of the structure and properties of nanosilicon. Methods for nanosilicon particle size control. New X-ray diffraction methods of analysis of the microstructure and morphology of nanocrystalline powders. (by Matteo Leoni). Methods of femtosecond spectroscopy and electron diffraction with time resolution. Part IV. Fluorescent labels based on the nanosilicon. (by S.V.Sizova, and A.A.Ischenko). Porous silicon as a photosensitizer of singlet oxygen generation. (by V.Y. Timoshenko). Sunscreen. (by AA Ishchenko, AA Krutikova). Polymer composites based on nanosilicon. Application of nanosilicon in solar energy. Subject Index.
Part I. Some properties of semiconductors - the terminology. Structure and properties of silicon. Porous silicon: luminescent properties. (by V.Y. Timoshenko). Quantum dots.(QDs). Part II . Methods of synthesis, modification of the surface and defining characteristics of nanosilicon. Oxidative processes in powders of nanosilicon. Thin films of silicon nanoparticles deposited from sols. Part III. Methods for investigation and control of the structure and properties of nanosilicon. Methods for nanosilicon particle size control. New X-ray diffraction methods of analysis of the microstructure and morphology of nanocrystalline powders. (by Matteo Leoni). Methods of femtosecond spectroscopy and electron diffraction with time resolution. Part IV. Fluorescent labels based on the nanosilicon. (by S.V.Sizova, and A.A.Ischenko). Porous silicon as a photosensitizer of singlet oxygen generation. (by V.Y. Timoshenko). Sunscreen. (by AA Ishchenko, AA Krutikova). Polymer composites based on nanosilicon. Application of nanosilicon in solar energy. Subject Index.
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