Mathematical model of thin-film electrode polarization

Mathematical model of thin-film electrode polarization A polarization equation is derived for a thin-film electrode based on a silicon nanocomposite. The shallow thickness of the active layer (several micrometers) allows making some simplifying assumptions when deriving this equation and makes it possible to consider the case of weak polarization. For the polarization equation, a boundary problem is formulated, solutions are obtained, and system parameters for galvanostatic discharge are evaluated. It is shown that the parameters of the solutions meet the test conditions for experimental thin-film Si–O–Al samples and the condition of weak polarization. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Russian Microelectronics Springer Journals

Mathematical model of thin-film electrode polarization

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Publisher
Pleiades Publishing
Copyright
Copyright © 2016 by Pleiades Publishing, Ltd.
Subject
Engineering; Electrical Engineering
ISSN
1063-7397
eISSN
1608-3415
D.O.I.
10.1134/S1063739716030057
Publisher site
See Article on Publisher Site

Abstract

A polarization equation is derived for a thin-film electrode based on a silicon nanocomposite. The shallow thickness of the active layer (several micrometers) allows making some simplifying assumptions when deriving this equation and makes it possible to consider the case of weak polarization. For the polarization equation, a boundary problem is formulated, solutions are obtained, and system parameters for galvanostatic discharge are evaluated. It is shown that the parameters of the solutions meet the test conditions for experimental thin-film Si–O–Al samples and the condition of weak polarization.

Journal

Russian MicroelectronicsSpringer Journals

Published: May 19, 2016

References

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