Fr. 77.00

Etching of wide-bandgap chemically resistant semiconductors - An electrochemical study

English, German · Paperback / Softback

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Description

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Silicon carbide (SiC) and gallium nitride (GaN) are believed to be ideal materials for the fabrication of electronic devices that can operate at high power levels, temperatures, and frequencies, because they exhibit a larger bandgap, higher breakdown electric field and higher saturated drift velocity than Si. SiC is also an attractive substrate for group III nitride-based optoelectronic devices such as blue light-emitting diodes and diode lasers. In addition, because of its exemplary chemical and mechanical properties SiC, in combination with Si, is finding wider application in sensors and micro-electromechanical systems (MEMS). Furthermore, GaN and SiC can be used as a photocathode for water splitting. For device fabrication, etching is an essential step. Dry etching techniques (i.e. reactive ion, electron cyclotron and inductively coupled plasma) are mostly used. The main disadvantages of these techniques are the high costs and the possibility of creating damage in the wafer. In many applications, wet-chemical etching is an attractive alternative. However, the stability of SiC and GaN poses a problem for open-circuit etching. Electrochemical etching offers a solution.

About the author










Dennis van Dorp has a PhD in physical chemistry. His interests are semiconductor electrochemistry, CVD growth of nanowires and solar cells. John Kelly is professor emeritus at Utrecht University where he worked in the Debye Institute. His interests include surface chemistry, nanomaterials, and the electrochemistry of metals and semiconductors.

Product details

Authors Dennis van Dorp, John Kelly, Denni van Dorp, Dennis van Dorp
Publisher LAP Lambert Academic Publishing
 
Languages English, German
Product format Paperback / Softback
Released 29.12.2010
 
EAN 9783843378376
ISBN 978-3-8433-7837-6
No. of pages 160
Subject Natural sciences, medicine, IT, technology > Chemistry > Physical chemistry

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