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Science and Technology of Chemical Mechanical Planarization (CMP): Symposium Held April 14-16, 2009, San Francisco, California, U.s.a.
By Chad S. Korach (editor), Subramanian Balakumar (editor), C. Fred Higgs, III (editor) and Ashok Kumar (editor)
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Bibliographic Detail
Publisher Cambridge Univ Pr
Publication date March 31, 2010
Pages 165
Binding Hardcover
Book category Adult Non-Fiction
ISBN-13 9781605111308
ISBN-10 1605111309
Dimensions 0.50 by 6 by 9 in.
Weight 0.80 lbs.
Original list price $134.99
Other format details university press
Summaries and Reviews
Amazon.com description: Product Description: This book demonstrates the swift progress achieved in the field of diamond for electronic and bioelectronic applications. Predicted to become the 'ultimate semiconductor' in the early 1990s, diamond initially failed to match the impressive developments made with other wide-bandgap semiconductors. The situation is changing, with single-crystal electronic-grade diamond becoming a commercially available material. As importantly, the spectacular properties of single-point defects in diamond, as well as its superlative thermal conductivity, radiation 'hardness' and inherent biocompatibility, are being recognized as vital for devices used in biosensing, quantum informatics, and environmentally challenging applications. Not all recent advances relate to single-crystal diamond. Nanocrystalline diamond (NCD), ultra-nanocrystalline diamond (UNCD) and diamond-like carbon (DLC) are very important forms of carbon, as are multiphase carbon nanostructures and graphene. It features results in all areas of high-performance diamond research. Chemical, electrochemical, and biochemical sensing, including nanodiamond for sensing in-cellular environment and the integration of diamond within biological systems are highlighted.

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Hardcover
Book cover for 9781605111308
 
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from Cambridge Univ Pr (March 31, 2010)
9781605111308 | details & prices | 165 pages | 6.00 × 9.00 × 0.50 in. | 0.80 lbs | List price $134.99
About: This book demonstrates the swift progress achieved in the field of diamond for electronic and bioelectronic applications.

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