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Carbon Nanotube Devices: Properties, Modeling, Integration and Applications

2010-04-28 
基本信息·出版社:Wiley-VCH ·页码:376 页 ·出版日期:2008年05月 ·ISBN:3527317201 ·条形码:9783527317202 ·装帧:精装 ·正文语种:英语 ·丛 ...
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Carbon Nanotube Devices: Properties, Modeling, Integration and Applications 去商家看看

 Carbon Nanotube Devices: Properties, Modeling, Integration and Applications


基本信息·出版社:Wiley-VCH
·页码:376 页
·出版日期:2008年05月
·ISBN:3527317201
·条形码:9783527317202
·装帧:精装
·正文语种:英语
·丛书名:Advanced Micro and Nanosystems
·外文书名:碳纳米管-基于纳米系统

内容简介 在线阅读本书

Following on from the first AMN volume, this handy reference and textbook examines the topic of nanosystem design in further detail. It explains the physical and chemical basics behind the design and fabrication of nanodevices, covering all important, recent advances in the field, while introducing nanosystems to less experienced readers.

The result is an important source for a fast, accurate overview of the state of the art of nanosystem realization, summarizing further important literature.
作者简介 Christofer Hierold holds the Chair of Micro– and Nanosystems at the ETH in Zurich, Switzerland, since April 2002. Prior to that, he spent eleven years with Siemens AG and Infineon Technologies AG, responsible for R&D on microsystems, advanced CMOS processes, memories, nanoelectronics and new materials. His current research work focuses on the evaluation of new materials for MEMS, on advanced microsystems and on nanotransducers.
Professor Hierold holds numerous patents and has published over 20 research articles in peer reviewed journals and international conference proceedings. He serves on the program committees of several scientific conferences such as the IEEE MEMS series.
专业书评 Following on from the first AMN volume, this handy reference and textbook examines the topic of nanosystem design in further detail. It explains the physical and chemical basics behind the design and fabrication of nanodevices, covering all important, recent advances in the field, while introducing nanosystems to less experienced readers.

The result is an important source for a fast, accurate overview of the state of the art of nanosystem realization, summarizing further important literature.

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