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Theory of Charge Transport in Carbon Electronic Materials (Paperback, 2012 ed.) Loot Price: R1,465
Discovery Miles 14 650
Theory of Charge Transport in Carbon Electronic Materials (Paperback, 2012 ed.): Zhigang Shuai, Linjun Wang, Chenchen Song

Theory of Charge Transport in Carbon Electronic Materials (Paperback, 2012 ed.)

Zhigang Shuai, Linjun Wang, Chenchen Song

Series: SpringerBriefs in Molecular Science

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Loot Price R1,465 Discovery Miles 14 650 | Repayment Terms: R137 pm x 12*

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Mechanism of charge transport in organic solids has been an issue of intensive interests and debates for over 50 years, not only because of the applications in printing electronics, but also because of the great challenges in understanding the electronic processes in complex systems. With the fast developments of both electronic structure theory and the computational technology, the dream of predicting the charge mobility is now gradually becoming a reality. This volume describes recent progresses in Prof. Shuai's group in developing computational tools to assess the intrinsic carrier mobility for organic and carbon materials at the first-principles level. According to the electron-phonon coupling strength, the charge transport mechanism is classified into three different categories, namely, the localized hopping model, the extended band model, and the polaron model. For each of them, a corresponding theoretical approach is developed and implemented into typical examples.

General

Imprint: Springer-Verlag
Country of origin: Germany
Series: SpringerBriefs in Molecular Science
Release date: 2012
First published: 2012
Authors: Zhigang Shuai • Linjun Wang • Chenchen Song
Dimensions: 235 x 155 x 6mm (L x W x T)
Format: Paperback
Pages: 90
Edition: 2012 ed.
ISBN-13: 978-3-642-25075-0
Categories: Books > Science & Mathematics > Chemistry > Physical chemistry > Electrochemistry & magnetochemistry
Books > Science & Mathematics > Chemistry > Physical chemistry > Quantum & theoretical chemistry
Books > Professional & Technical > Electronics & communications engineering > Electronics engineering > Electronic devices & materials > General
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LSN: 3-642-25075-0
Barcode: 9783642250750

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