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Charge Dynamics in Organic Semiconductors

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In the field of organic semiconductors researchers and manufacturers are faced with a wide range of potential molecules. This work presents concepts for simulation-based predictions of material cha...
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  • 12 September 2016
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In the field of organic semiconductors researchers and manufacturers are faced with a wide range of potential molecules. This work presents concepts for simulation-based predictions of material characteristics starting from chemical stuctures. The focus lies on charge transport – be it in microscopic models of amorphous morphologies, lattice models or large-scale device models.
An extensive introductory review, which also includes experimental techniques, makes this work interesting for a broad readership.

Contents:  
Organic Semiconductor Devices
Experimental Techniques
Charge Dynamics at Dierent Scales
Computational Methods
Energetics and Dispersive Transport
Correlated Energetic Landscapes
Microscopic, Stochastic and Device Simulations
Parametrization of Lattice Models
Drift–Diusion with Microscopic Link

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Price: $230.00
Pages: 201
Publisher: De Gruyter
Imprint: De Gruyter
Publication Date: 12 September 2016
ISBN: 9783110473605
Format: Hardcover
BISACs: SCI013040 SCIENCE / Chemistry / Organic, SCI077000 SCIENCE / Physics / Condensed Matter, TEC021000 Technology & Engineering / Materials Science / General
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Pascal Kordt, Mainz, Germany.

Introduction

1. Organic Semiconductor Devices

2. Experimental Techniques

3. Charge Dynamics at Different Scales

4. Computational Methods

5. Energetics and Dispersive Transport

6. Correlated Energetic Landscapes

7. Microscopic, Stochastic and Device Simulations

8. Parametrization of Lattice Models

9. Drift–Diffusion with Microscopic Link

Conclusions and Outlook