分子掺杂聚合物中的电荷输运:相关无序模型的检验

IF 2.781
L. Schein, A. Tyutnev
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引用次数: 8

摘要

相关无序模型(CDM)被提出作为分子掺杂聚合物(MDPs)中电荷输运的一种理论。最近提出了对CDM的一种检验:预测偶极无序能可以由迁移率的对数相对于电场的平方根的斜率(Poole-Frenkel或PF斜率)得到。我们发现,从实验的PF斜率得到的偶极无序能几乎总是大于理论预测,特别是对于由低偶极矩掺杂剂制成的mdp。此外,该理论将偶极无序能与温度T0联系起来,在此温度下,对迁移率的电场依赖性消失。我们发现,观测到的T0确实随着偶极无序度的增加而增加,但仅在有限的一组测量中与理论预测在定量上一致(在25 K以内)。我们的结论是,似乎CDM需要进一步发展,以符合或…
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Charge Transport in Molecularly Doped Polymers: Tests of the Correlated Disorder Model
The correlated disorder model (CDM) has been proposed as a theory of charge transport in molecularly doped polymers (MDPs). Recently a test of the CDM was proposed: it was predicted that the dipolar disorder energy can be obtained from the slope of the log of the mobility versus square root of the electric field (the Poole-Frenkel or PF slope). We find that the dipolar disorder energy obtained from the experimental PF slopes are almost always larger than the theoretical predictions, especially for MDPs made from dopants with low dipole moments. In addition, the theory relates the dipolar disorder energy to the temperature T0 at which the electric field dependence of the mobility vanishes. We find that the observed T0 does appear to increase as the dipolar disorder increases but is in quantitative agreement (within 25 K) with the theoretical predictions for only a limited set of the measurements. We conclude that it appears that the CDM needs further development to be consistent with charge transport in or...
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