Reduced Hole Mobility in Photorefractive Polymers due to the Chromophore Dipole Moment

A. Goonesekera, S. Ducharme
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Abstract

The recent demonstrations of low-cost high performance photorefractive polymers has encouraged more detailed studies of charge carrier transport mechanisms in photorefractive polymers as charge transport is a limiting factor in the sensitivity of these materials. The photorefractive effect is a mechanism for non local refractive index grating formation in an electro-optic material due to nonuniform illumination, through photoconduction and linear electro-optic response. The speed of photorefractive effect which remains low at present, is proportional to photoconductivity, hence improved understanding of transport mechanisms is vital. This report describes the negative effect the dipole moment of the non-linear chromophore has on the hole mobility in photorefractive polymers.
由发色团偶极矩引起的光折变聚合物中空穴迁移率的降低
由于电荷输运是影响光折变聚合物灵敏度的一个限制因素,近年来低成本高性能光折变聚合物的出现鼓励了对光折变聚合物中载流子输运机制的更详细的研究。光折变效应是由于光照不均匀导致电光材料通过光导和线性电光响应形成非局部折射率光栅的机制。光折变效应的速度目前仍然很低,与光电导率成正比,因此提高对传输机制的理解至关重要。本文描述了非线性发色团的偶极矩对光折变聚合物中空穴迁移率的负影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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