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Space-charge dynamics in photorefractive polymers

机译:光折射聚合物中的空间电荷动力学

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摘要

The model of space-charge formation in photorefractive polymers due to Schildkraut and Buettner has been modified to include thermally accessible deep traps as well as shallow traps. The dynamic equations have been solved semiempirically using independent measurements of photoconductive properties to predict photorefractive dynamics. Dependencies of the dynamics on charge generation, mobility, trap density, acceptor density, ionized acceptor density, as well as their associated rates are examined. The magnitude of the fast time constant of photorefractive development is successfully predicted. The introduction of deep traps into the model has allowed us to qualitatively predict the reduction in speed due to deep trap filling and ionized acceptor growth. Experimental studies of photoconductivity and photorefraction (PR) in several polyvinyl carbazole photorefractive composites are carried out to demonstrate the applicability of the model. By choosing chromophores with different ionization potentials and by varying the chromophore concentrations, we investigate the influence of the chromophore ionization potential on the photoelectric and PR properties and reveal the nature of deep traps in the composites and their contribution to both photoconductivity and PR dynamics. Effects of plasticizer components are also discussed.
机译:由于 Schildkraut 和 Buettner 引起的光折射聚合物中空间电荷形成的模型已被修改,以包括热可及的深阱和浅阱。动力学方程已经使用光电导特性的独立测量以半经验方式求解,以预测光折射动力学。研究了动力学对电荷产生、迁移率、陷阱密度、受体密度、电离受体密度及其相关速率的依赖性。成功预测了光折射发育的快速时间常数的大小。在模型中引入深阱使我们能够定性地预测由于深阱填充和电离受体生长而导致的速度降低。通过对几种聚乙烯咔唑光折射复合材料的光电导率和光折射(PR)进行实验研究,验证了该模型的适用性。通过选择具有不同电离电位的发色团并改变发色团浓度,我们研究了发色团电离电位对光电和PR性能的影响,并揭示了复合材料中深阱的性质及其对光电导率和PR动力学的贡献。还讨论了增塑剂成分的影响。

著录项

  • 来源
    《Journal of Applied Physics》 |2002年第4期|1727-1743|共17页
  • 作者单位

    Department of Physics, Case Western Reserve University, Cleveland, Ohio 44106-7079;

    Project Leader,Animal Health and Welfare,Cheshire County Council;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 应用物理学;
  • 关键词

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