Overview
- Provides consistent multi-disciplinary approach demonstrating principles of the field including latest achievements in hot areas such as nanofabrication and nanotechnology
- Includes approximately 200 figures and tables to explain the topic
- Presents current status and future trends of nanoimprint lithography research
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Table of contents (10 chapters)
Keywords
About this book
This book would be of specific interest for researchers and graduate students in the field of nanoscience, nanotechnology and nanofabrication, material, physical, chemical, electric engineering and biology.
Dr. Weimin Zhou is an associate professor at Shanghai Nanotechnology Promotion Center, China.
Authors and Affiliations
About the author
Education:
1996.9-2000.7 Anhui polytechnic University, major in mechanical engineering
2001.9-2003.7 Harbin institute of technology, material engineering.
2004.3-2007.3 Shanghai Jiao Tong University, major in Microelectronics and Solid-State Electronics
2007.4-2009.4 Postdoctral Fellow at Shanghai Institute of Microsystem and Information Technology       Â
Work experience :
2004.3-2007.3 one –dimensional nanostructure and its application in nanodevices, Fabrication of semiconductor nanowrie/ nanotube, carbon nanotube
2007.4-2009.4 Nanoimprint lithography process and its application in light emitting diodes. Â
2009.4- now Associate Professor at Shanghai Nanotechnology Promotion Center Nanoimprint lithography and its application in nanodevices( biosensor, solar cell .et al )
Bibliographic Information
Book Title: Nanoimprint Lithography: An Enabling Process for Nanofabrication
Authors: Weimin Zhou
DOI: https://doi.org/10.1007/978-3-642-34428-2
Publisher: Springer Berlin, Heidelberg
eBook Packages: Engineering, Engineering (R0)
Copyright Information: Springer-Verlag Berlin Heidelberg 2013
Hardcover ISBN: 978-3-642-34427-5Published: 04 January 2013
Softcover ISBN: 978-3-662-51086-5Published: 23 August 2016
eBook ISBN: 978-3-642-34428-2Published: 04 January 2013
Edition Number: 1
Number of Pages: XIII, 249
Topics: Nanotechnology and Microengineering, Optical and Electronic Materials, Nanotechnology, Nanochemistry