File:Schottky barrier on p-SiC.PNG: Difference between revisions
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|date-created = 2011-02-09 | |date-created = 2011-02-09 | ||
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|notes = Patterned after {{cite book |title=Silicon carbide: recent major advances |author=Winfried Mönch |editor=W. J. Choyke, Hiroyuki Matsunami, Gerhard Pensl|url=http://books.google.com/books?id=mLBmKotEe9cC&pg=PA333 |pages=p. 333 |chapter=Figure 9 |isbn=3540404589 |publisher=Springer |year=2004}} The different barrier heights for the same metal correspond to different interface structures. The solid line is the theoretical result based upon metal induced gap states (MIGS). | |notes = Patterned after {{cite book |title=Silicon carbide: recent major advances |author=Winfried Mönch |editor=W. J. Choyke, Hiroyuki Matsunami, Gerhard Pensl, eds|url=http://books.google.com/books?id=mLBmKotEe9cC&pg=PA333 |pages=p. 333 |chapter=Figure 9 |isbn=3540404589 |publisher=Springer |year=2004}} The different barrier heights for the same metal correspond to different interface structures. The solid line is the theoretical result based upon metal induced gap states (MIGS). | ||
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Revision as of 11:38, 9 February 2011
Summary
Title / Description
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Theoretical Schottky barrier height on p-SiC vs. metal electronegativity |
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Citizendium author
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John R. Brews |
Date created
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2011-02-09 |
Country of first publication
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USA |
Notes
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Patterned after Winfried Mönch (2004). “Figure 9”, W. J. Choyke, Hiroyuki Matsunami, Gerhard Pensl, eds: Silicon carbide: recent major advances. Springer, p. 333. ISBN 3540404589. The different barrier heights for the same metal correspond to different interface structures. The solid line is the theoretical result based upon metal induced gap states (MIGS). |
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