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Nanocrystals - Synthesis, Characterization and Applications

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ISBN: 9789535107149 9789535142836 Year: Pages: 212 DOI: 10.5772/2560 Language: English
Publisher: IntechOpen
Subject: Physics (General)
Added to DOAB on : 2019-10-03 07:51:49

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Abstract

Nanocrystals research has been an area of significant interest lately, due to the wide variety of potential applications in semiconductor, optical and biomedical fields. This book consists of a collection of research work on nanocrystals processing and characterization of their structural, optical, electronic, magnetic and mechanical properties. Various methods for nanocrystals synthesis are discussed in the book. Size-dependent properties such as quantum confinement, superparamagnetism have been observed in semiconductor and magnetic nanoparticles. Nanocrystals incorporated into different material systems have proven to possess improved properties. A review of the exciting outcomes nanoparticles study has provided indicates further accomplishments in the near future.

Nanowires - Recent Advances

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ISBN: 9789535108986 9789535142607 Year: Pages: 436 DOI: 10.5772/3367 Language: English
Publisher: IntechOpen
Subject: Physics (General)
Added to DOAB on : 2019-10-03 09:47:09

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One dimensional nanoscale structures such as nanowires have drawn extensive research interests in recent years. The size miniature brings unique properties to nanowires due to quantum confinement. The large surface-to-volume ratio renders nanowires with high sensitivity to surface effects. The unique geometrical advantages and properties facilitate the utilization of nanowires in nano-electronics. InTech scientific publisher has initialized a series of books focusing on fundamental research in nanowires, which largely boosted the widespread of knowledge among the research society. This book is intended to provide an updated review on the applications of various nanowires and the associated advancements in synthesis and properties characterization. The topics include recent progress in metal oxide nanowires, silicon nanowires, carbon based nanotubes and nanowires.

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2012 (2)