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Charge transfer processes across organic/electrode interfaces in organic photovoltaics.

机译:跨有机光伏中有机/电极界面的电荷转移过程。

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摘要

Charge transfer efficiency at organic/electrode interfaces affects the performance organic photovoltaics (OPVs). It is hypothesized that the charge collection efficiency at organic/electrode interfaces is influenced by the structure of the first molecular layer adjacent to the electrode surface.;Two differently oriented monolayers composed of two phosphonic acid (PA) functionalized zinc phthalocyanine (ZnPc) molecules, one with four PAs attached peripherally (ZnPcPA4), one at each quadrant, and another that is functionalized with one PA (ZnPcPA), were tethered to indium tin oxide (ITO) surfaces as models for the donor/transparent conducting oxide (TCO) interface in OPVs to address the relationship between molecular orientation and electron transfer kinetics across the organic/ITO interface. The electron transfer rate constants across the monolayer/ITO interface were measured using potential modulated attenuated total reflectance (PM-ATR) spectroscopy in TE and TM polarizations, which allows rate constants to be determined for subpopulations of molecules that are oriented predominately in-plane and out-of-plane, respectively. The templating effect of the tethered monolayer on sequential layers of donor material for ZnPcPA and ZnPcPA4 monolayers was assessed by depositing a few layers of CuPc on ZnPcPA- and ZnPcPA4-modified ITO. The performance of OPV devices fabricated on ITO modified with these two monolayers was compared and correlated to their orientation and energy alignments with other layers in the devices.;The dependence of kinetics of electron transfer on overpotential was studied using monolayer-tethered ZnPcPA on ITO. Measurements of apparent heterogeneous electron transfer rate constants (kapp) as a function of applied potential across the ZnPcPA/ITO interface were acquired using PM-ATR at various dc biases (Edc). With varying Edc imposed on the electrode, the fraction of adsorbed molecules in reduced or oxidized states is changed, and both the energetics and kinetics of the electrode reaction are affected. The results were discussed and compared to theoretical predictions.;The photoinduced charge harvesting and photocurrent generation were assessed using a clicked ZnPc-perylene diimide (PDI) donor-acceptor assembly tethered to ITO via a PA anchoring group. This ZnPc-PDI donor-acceptor assembly was used to investigate the mechanism of photoinduced charge transfer and hole-capture by ITO in the presence of a solution phase redox mediator.
机译:有机/电极界面处的电荷转移效率会影响有机光伏(OPV)的性能。假设在有机/电极界面处的电荷收集效率受与电极表面相邻的第一分子层结构的影响。;由两个膦酸(PA)官能化的酞菁锌(ZnPc)分子组成的两个不同取向的单层,将一个带有四个PA的外围连接(ZnPcPA4),每个象限一个,另一个通过一个PA(ZnPcPA)功能化的连接到铟锡氧化物(ITO)表面,作为供体/透明导电氧化物(TCO)界面的模型在OPV中用于解决分子取向与跨有机/ ITO界面的电子转移动力学之间的关系。使用TE和TM极化中的电势调制衰减全反射(PM-ATR)光谱测量了跨单层/ ITO界面的电子传输速率常数,这使得可以确定主要在平面内取向的分子亚群的速率常数。平面外。通过在ZnPcPA和ZnPcPA4修饰的ITO上沉积几层CuPc,可以评估束缚单层对ZnPcPA和ZnPcPA4单层供体材料的连续层的模板作用。比较了用这两个单层改性的ITO制成的OPV器件的性能,并将其与器件中其他层的取向和能量取向相关联。;在ITO上使用单分子束缚的ZnPcPA研究了电子转移动力学对超电势的依赖性。使用PM-ATR在各种dc偏置(Edc)下获得的表观异质电子传输速率常数(kapp)作为跨ZnPcPA / ITO界面施加电势的函数的测量值。通过在电极上施加不同的Edc,还原或氧化态的吸附分子比例会发生变化,并且电极反应的能量和动力学都会受到影响。对结果进行了讨论并与理论预测进行了比较。;使用通过PA锚定基团拴接到ITO的单击式ZnPc-per二酰亚胺(PDI)供体-受体,评估了光诱导的电荷收集和光电流产生。 ZnPc-PDI供体-受体组装体用于研究在溶液相氧化还原介体存在下ITO引起的光致电荷转移和空穴捕获的机理。

著录项

  • 作者

    Lin, Hsiao-Chu.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 275 p.
  • 总页数 275
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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