Time of flight transients in the dipolar glass model
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference36 articles.
1. Cluster Structure in the Distribution of the Electrostatic Potential in a Lattice of Randomly Oriented Dipoles
2. Charge-Dipole Model for the Universal Field Dependence of Mobilities in Molecularly Doped Polymers
3. Essential Role of Correlations in Governing Charge Transport in Disordered Organic Materials
4. Nature of Charge Carriers in Disordered Molecular Solids: Are Polarons Compatible with Observations?
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1. Heuristic description of separate charge transport pathways determined by Time of Flight: Multiple hole transit times in the ubiquitous poly(3-hexylthiophene);Organic Electronics;2019-11
2. Comparative Monte-Carlo simulations of charge carrier transport in amorphous molecular solids as given by three most common models of disorder: The dipolar glass, the Gaussian disorder, and their mix;The Journal of Chemical Physics;2017-09-21
3. The nature of plateau on time-of-flight curves in molecularly doped polymers;Polymer Science, Series A;2017-07
4. Poole-Frenkel mobility field dependence in molecularly doped polymers revisited;Chemical Physics;2017-02
5. Comparison of the time of flight current shapes predicted by hopping and multiple trapping models;Chemical Physics;2014-08
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