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[资源] 早知道有这本书博士期间就不会找不对方向了:Controlled Nanofabrication

这本专著很详细,也很全面,简要的目录摘录出来。各位师弟师妹,加油哦。
Edited By Ru-Shi Liu
Pan Stanford Publishing
CRC Press
Taylor & Francis Group
6000 Broken Sound Parkway NW, Suite 300
Boca Raton, FL 33487-2742
© 2013 by Taylor & Francis Group, LLC
CRC Press is an imprint of Taylor & Francis Group, an Informa business
No claim to original U.S. Government works
Version Date: 2012919
International Standard Book Number-13: 978-9-81436-451-5 (eBook - PDF)
This book contains information obtained from authentic and highly regarded sources. Reasonable efforts have been made to publish reliable data and information, but the author and publisher
cannot assume responsibility for the validity of all materials or the consequences of their use. The
authors and publishers have attempted to trace the copyright holders of all material reproduced in
this publication and apologize to copyright holders if permission to publish in this form has not
been obtained. If any copyright material has not been acknowledged please write and let us know so
we may rectify in any future reprint.
Except as permitted under U.S. Copyright Law, no part of this book may be reprinted, reproduced,
transmitted, or utilized in any form by any electronic, mechanical, or other means, now known or
hereafter invented, including photocopying, microfilming, and recording, or in any information
storage or retrieval system, without written permission from the publishers.
For permission to photocopy or use material electronically from this work, please access www.
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(CCC), 222 Rosewood Drive, Danvers, MA 01923, 978-750-8400. CCC is a not-for-profit organization that provides licenses and registration for a variety of users. For organizations that have been
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Trademark Noticeroduct or corporate names may be trademarks or registered trademarks, and
are used only for identification and explanation without intent to infringe.
Visit the Taylor & Francis Web site at
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and the CRC Press Web site at
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Content
1.  An Introduction of Controlled Sizes and Shapes of Nanostructured Materials and Their Applications
2. Spatial Separation of Reaction Sites on Rutile TiO2 Nanorod by Exposing Crystal Faces and Development of Visible Light Responsive Rutile TiO2Nanorod
3. Controlled Shaping TiO2for Efϐicient Photocatalysis
4.  Shape and Particle Size Controlled for Water Splitting
5.  Characterization of TiO2 Nanoparticles Cytotoxicity
6.  Functionalized Porous Materials as Drug Carriers
7.  Shape and Size Selective Synthesis of Gold Nanostructures for Biomedical Applications
8.  Shape-Controlled Synthesis of Nanocrystals and Their Facet-Dependent Properties
9.  Size- and Shape-Controlled Hybrid Inorganic Nanomaterials and Application for Low- Temperature CO Oxidation
10. Shape-Controlled Synthesis of Metal Oxide Nanocrystals
11. Self-Assembly: A Novel Way to Fabricate Nanomaterials
12. Shape-Controlled Synthesis of Platinum Nanostructures as Electrocatalyst for PEM Fuel Cell Applications
13. Controlled Particle Size and Shape of Nanomaterials and Their Applications in Supercapacitors
14. Nano/Composite Materials for Lithium-ion Batteries
15. Controlled Size and Shape of Graphene and Its Application in Li-ion Battery
16. Controlled Growth of Quantum Dots and Their Application as Wavelength Converters for LEDs
17. Artiϐicial Nanostructures with Controlled Sizes and Shapes for Field Emission Displays
Preface
Today, there is global consensus on the importance of nanotechnology.
The  major  economies  of  the  world  depend  on  important  areas  of
nanotechnology  for  science  and  technology  development.  When
the  size  and  the  shape  of  materials  are  reduced  to  the  nanoscale
dimension,  their  physical  and  chemical  properties  can  change
dramatically. This book focuses on the controlled size and shape of
nanostructured  materials  and  their  applications.  The  applications
cover  a  broad  ϐield,  especially  energy-related  uses.  The  book  may
be  the  ϐirst  to  clearly  point  out  the  relationship  between  the size
and  the  structure  of  the  materials,  which  strongly  affects  their
properties. Understanding these control parameters has important
technological  implications  for  energy  conversion  and  storage,
biotechnology, lighting and display, and so forth.
The content is organized into 17 chapters. Chapter 1 introduces
readers to the theme of the book. Chapters 2 to 5 present examples
of  crystal  faces  of  TiO2
and ZnO and the effects of shaping on
their  photocatalysis  and  cytotoxicity.  Chapter  6  is  a  review  of
functionalized porous materials as drug carriers. Chapters 7 and 8
focus on the shape- and size-selective synthesis of gold nanomaterials
for  biomedical  and  photocatalytic  applications.  Chapters  9  to  11
demonstrate the size- and shape-controlled self-assembly of hybrid
inorganic nanomaterials and their application for low-temperature
CO  oxidation.  Chapters  12  to  17  focus  on  the  shape-controlled
synthesis  of  nanostructured  materials  for  application  in  fuel  cells,
supercapacitors,  Li-ion  batteries,  light-emitting  diodes,  and  ϐield
emission display.
I thank the authors, globally recognized in their ϐields, for their
invaluable contributions, which have made this book comprehensive
and a very useful reference for scientists and students.
Ru-Shi Liu
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