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The development of semiconducting materials for organic photovoltaics.

机译:用于有机光伏的半导体材料的发展。

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摘要

The chemical structure of conjugated semiconducting materials strongly influences the performance of organic photovoltaic (OPV) devices. Thus a good understanding of the structure-function relationships that govern the optoelectronic and physical properties of OPV materials is necessary. In this dissertation, organic polymers and small molecules are evaluated in terms of OPV device output parameters, and molecular design rules are elucidated.;The development of molecules with alternating electron-rich and electron-deficient backbone units provides materials with suitable optoelectronic properties for OPVs and favorable modularity for organic semiconductor design. The choice of specific aromatic units and side chains for conjugated materials are shown to modulate the energy levels and architecture of OPV devices, affecting each of the four mechanistic steps of OPV operation.;In Chapter 2, the relationship between molecular packing parameters and the bulkiness of aliphatic solubilizing group extending away from a polymer backbone is elucidated, and high-performance OPV devices are achieved. In Chapter 3, the inclusion of a post-processing functionality on a polymer side chain is found to have a positive effect on the bulk morphology and overall performance of OPV devices. In Chapter 4, the influence of electron-withdrawing and quinoidal monomers on the optoelectronic properties of conjugated polymers is established, and energy level modulation is shown to affect the electron accepting and donating capabilities of OPV materials in a blended device. In Chapter 5, small molecules are designed with complementary light absorption properties in order to investigate a rarely observed charge generation mechanism.
机译:共轭半导体材料的化学结构强烈影响有机光伏(OPV)器件的性能。因此,必须很好地了解控制OPV材料的光电和物理特性的结构-功能关系。本文根据有机发光器件的输出参数对有机聚合物和小分子进行了评估,并阐明了分子设计规则。具有富电子和缺电子主链单元交替的分子的发展为有机发光二极管提供了具有合适光电性能的材料。有机半导体设计的良好模块化。共轭材料的特定芳族单元和侧链的选择显示出可调节OPV装置的能级和结构,影响OPV操作的四个机械步骤中的每一个。在第二章中,分子堆积参数与体积之间的关系阐明了远离聚合物主链延伸的脂族增溶基团的结构,并获得了高性能的OPV器件。在第3章中,发现在聚合物侧链上包含后处理功能对OPV器件的整体形态和整体性能具有积极影响。在第4章中,建立了吸电子单体和醌型单体对共轭聚合物光电性能的影响,并且表明能级调制会影响共混器件中OPV材料的电子接受和给电子能力。在第5章中,设计了具有互补光吸收特性的小分子,以研究很少观察到的电荷产生机理。

著录项

  • 作者

    Douglas, Jessica Dakotah.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Chemistry Organic.;Engineering Materials Science.;Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 94 p.
  • 总页数 94
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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