An edition of Wide Band Gap Electronic Materials (1995)

Wide Band Gap Electronic Materials

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Last edited by MARC Bot
July 8, 2019 | History
An edition of Wide Band Gap Electronic Materials (1995)

Wide Band Gap Electronic Materials

Wide Band Gap Electronic Materials covers topics including electronic doping of diamond, n-type diamond, negative electron affinity of diamond, applications of aluminum nitride, the doping of boron nitride, wide band gap electronic applications, and nanophase diamond. One of the highlights is the description of an energy sub-band due to defects in the diamond lattice, responsible for a diamond LED which can emit red, green and blue light. Revolutionary nanostructure devices are also described, such as nanostructure transistors. It is also shown how aluminum nitride can be used in acoustic, piezo and electroluminescent devices. Nanophase diamond particles having a narrow size distribution around 4 nm can be created by an explosive shock wave, and these can be used as seeds for growing smooth diamond films, as additives in composite materials, for nanophase electronic devices, and as the basis for superior lubricants. Other problems covered include the heteroepitaxy of diamond films, doping of aluminum nitride, and the growth of large crystals of boron nitride.

Publish Date
Language
English
Pages
531

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Previews available in: English

Edition Availability
Cover of: Wide Band Gap Electronic Materials
Wide Band Gap Electronic Materials
Jan 11, 2013, Springer
paperback
Cover of: Wide Band Gap Electronic Materials
Wide Band Gap Electronic Materials
1995, Springer Netherlands
electronic resource / in English

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Book Details


Edition Notes

Online full text is restricted to subscribers.

Also available in print.

Mode of access: World Wide Web.

Published in
Dordrecht
Series
NATO ASI Series, 3. High Technology -- 1, NATO ASI Series, 3. High Technology -- 1
Other Titles
Proceedings of the NATO Advanced Research Workshop on `Wide Band Gap Electronic Materials -- Diamond, Aluminum Nitride and Boron Nitride', Minsk, Belarus, May 4--6, 1994

Classifications

Dewey Decimal Class
620.11295, 620.11297
Library of Congress
TA1750-1750.22, TA1750-1750.22TA404., QC374-379

The Physical Object

Format
[electronic resource] /
Pagination
1 online resource (xv, 531 p.)
Number of pages
531

ID Numbers

Open Library
OL27095815M
Internet Archive
widebandgapelect00popo
ISBN 10
9401040788, 9401101736
ISBN 13
9789401040785, 9789401101738
OCLC/WorldCat
851392292

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July 8, 2019 Created by MARC Bot import new book