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Exciton Diffusion Length in Solution-Processed Small Molecules.

机译:溶液处理的小分子的激子扩散长度。

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摘要

Organic photovoltaic (OPV) devices have the potential to be a cost-efficient, clean, and renewable energy source. A fundamental process in OPV devices which directly impacts the device performance is the diffusion length of Coulombically bound electron-hole pairs or excitons. It is therefore important to investigate how chemical structure and processing conditions impact the exciton diffusion length. This study is difficult to perform with the current body of literature since compounds in separate works differ by a number of chemical modifications. Comparisons between works are further complicated by the use of different techniques to measure the exciton diffusion length. To resolve these issues, the first aim of this dissertation is to compare the fabrication, measurement, and analysis procedure for six different techniques to measure exciton diffusion length. We find that bulk quenching techniques are preferred over surface quenching techniques which require elaborate fabrication procedures, multiple measurements, and a number of assumptions in the analysis process. The second aim of this dissertation is to investigate how chemical structure and processing conditions impact the exciton diffusion length. We find that decreasing the conjugation length in a small molecule leads to an enhancement in the exciton diffusion length while replacing the linear alkyl chains with bulky ethyl hexyl groups has no significant effect. Lastly, we show that processing films with a high boiling point solvent leads to an enhancement in the exciton trap density which directly reduces the exciton diffusion length.
机译:有机光伏(OPV)设备有潜力成为一种经济高效,清洁和可再生的能源。直接影响器件性能的OPV器件的基本过程是库仑结合的电子-空穴对或激子的扩散长度。因此,研究化学结构和加工条件如何影响激子扩散长度非常重要。目前的文献很难进行这项研究,因为不同作品中的化合物在化学修饰上有所不同。通过使用不同的技术来测量激子扩散长度,作品之间的比较变得更加复杂。为了解决这些问题,本论文的首要目的是比较六种不同的测量激子扩散长度的技术的制造,测量和分析过程。我们发现本体淬火技术优于表面淬火技术,表面淬火技术需要复杂的制造程序,多次测量以及分析过程中的许多假设。本文的第二个目的是研究化学结构和加工条件如何影响激子扩散长度。我们发现减小小分子中的共轭长度会导致激子扩散长度的增加,而用大体积的乙基己基取代线性烷基链则没有显着影响。最后,我们表明用高沸点溶剂处理薄膜会导致激子陷阱密度的增加,从而直接减少激子扩散长度。

著录项

  • 作者

    Lin, Jason.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Chemistry Physical.;Engineering Materials Science.;Energy.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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