Improving the theoretical description of charge transport in organic crystals

被引:1
作者
da Cunha, Wiliam F. [1 ]
de Brito, Sara S. [1 ]
de Sousa, Leonardo E. [1 ]
Enders, Bernhard G. [1 ]
de Oliveira Neto, Pedro H. [1 ]
机构
[1] Univ Brasilia, Inst Phys, BR-70919970 Brasilia, DF, Brazil
关键词
Charge carrier mobility; Transfer rate; Marcus theory; Monte Carlo method; Hopping transport; QUANTITATIVE PREDICTION; TEMPERATURE-DEPENDENCE; MOBILITY; SEMICONDUCTORS;
D O I
10.1007/s00894-019-3953-3
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Charge hopping based on Marcus theory is often used to predict charge carrier mobilities in organic crystals, although it is known to systematically underestimate the values. Here we show that this deficiency may lie on a fundamental aspect of quantum statistical averages, rather than on the approximation itself. Under adequate Boltzmann weighing procedure used to evaluate electron and hole transfer integrals, a kinetic Monte Carlo model is employed to describe mobilities in an azacene derivative. The values are in good agreement with experimental data suggesting that the evaluation of transfer integrals may be the weak link in hopping transport models.
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页数:7
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共 34 条
[21]   Charge transport in organic crystals: Theory and modelling [J].
Ortmann, Frank ;
Bechstedt, Friedhelm ;
Hannewald, Karsten .
PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2011, 248 (03) :511-525
[22]   Molecular Self-Doping Controls Luminescence of Pure Organic Single Crystals [J].
Parashchuk, Olga D. ;
Mannanov, Artur A. ;
Konstantinov, Vladislav G. ;
Dominskiy, Dmitry I. ;
Surin, Nikolay M. ;
Borshchev, Oleg V. ;
Ponomarenko, Sergei A. ;
Pshenichnikov, Maxim S. ;
Paraschuk, Dmitry Yu. .
ADVANCED FUNCTIONAL MATERIALS, 2018, 28 (21)
[23]   DIFFUSION AND DRIFT OF CHARGE-CARRIERS IN A RANDOM POTENTIAL - DEVIATION FROM EINSTEIN LAW [J].
RICHERT, R ;
PAUTMEIER, L ;
BASSLER, H .
PHYSICAL REVIEW LETTERS, 1989, 63 (05) :547-550
[24]   From charge transport parameters to charge mobility in organic semiconductors through multiscale simulation [J].
Shuai, Zhigang ;
Geng, Hua ;
Xu, Wei ;
Liao, Yi ;
Andre, Jean-Marie .
CHEMICAL SOCIETY REVIEWS, 2014, 43 (08) :2662-2679
[25]   Evaluation of Charge Mobility in Organic Materials: From Localized to Delocalized Descriptions at a First-Principles Level [J].
Shuai, Zhigang ;
Wang, Linjun ;
Li, Qikai .
ADVANCED MATERIALS, 2011, 23 (09) :1145-1153
[26]   Mobility field and mobility temperature dependence in PC61BM: A kinetic Monte-Carlo study [J].
Sousa, Leonardo ;
Volpi, Riccardo ;
da Silva Filho, Demetrio Antonio ;
Linares, Mathieu .
CHEMICAL PHYSICS LETTERS, 2017, 689 :74-81
[27]   Comparison of different rate constant expressions for the prediction of charge and energy transport in oligoacenes [J].
Stehr, V. ;
Fink, R. F. ;
Tafipolski, M. ;
Deibel, C. ;
Engels, B. .
WILEY INTERDISCIPLINARY REVIEWS-COMPUTATIONAL MOLECULAR SCIENCE, 2016, 6 (06) :694-720
[29]   Effect of Polarization on the Mobility of C60: A Kinetic Monte Carlo Study [J].
Volpi, Riccardo ;
Kottravel, Sathish ;
Norby, Morten Steen ;
Stafstrom, Sven ;
Linares, Mathieu .
JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2016, 12 (02) :812-824
[30]   Computational methods for design of organic materials with high charge mobility [J].
Wang, Linjun ;
Nan, Guangjun ;
Yang, Xiaodi ;
Peng, Qian ;
Li, Qikai ;
Shuai, Zhigang .
CHEMICAL SOCIETY REVIEWS, 2010, 39 (02) :423-434