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Coherently controlled spin-dependent charge carrier transitions in organic semiconductors: Properties and applications.

机译:相干控制的自旋相关的有机半导体中的载流子跃迁:性质和应用。

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摘要

This thesis is focused on the investigation of the fundamental physical nature and potential technical applications of spin-dependent charge carrier recombination in poly[2-methoxy-5-(2'-ethyl-hexyloxy)-1,4-phenylene vinylene (MEH-PPV), a pi conjugated polymer which has been utilized as organic thin film semiconductor. Pulsed electrically detected magnetic resonance (pEDMR) spectroscopy was used to observe how coherent spin motion of paramagnetic charge carrier states (so called polarons) control the macroscopic conductivity of thin (∼100nm) MEH-PPV layers under different charge carrier injection regimes. The pEDMR experiments were conducted at frequencies covering almost three orders of magnitude (∼20MHz to ∼10GHz) and at temperatures between ∼5K and ∼300k. The measurements revealed that under balanced bipolar injection, the conductivity of MEH-PPV is influenced at any temperature by the polaron pair (PP) mechanism, a spin-dependent process previously described in the literature. The experiments showed that PPs are weakly exchange- and dipolar-coupled pairs but they are strongly influenced by proton induced hyperfine fields. Electrical detection of coherent polaron-spin motion revealed extraordinary long coherence times (order of mus) at room temperature which could qualify PPs for quantum information applications. The PP mechanism was also demonstrated to work as an extraordinary sensitive (< 50 nT Hz-1/2) organic thin film probe which uses the polarons gyromagnetic ratio gamma as magnetic field standard. gamma was observed to be independent of temperature, device-current, and -bias, and degradation of the MEH-PPV device. In addition to the PP mechanism, another spin-dependent process previously described in the literature was confirmed to significantly influence conductivity in MEH-PPV: Triplet-exciton polaron recombination.
机译:本论文着重研究聚[2-甲氧基-5-(2'-乙基-己氧基)-1,4-亚苯基亚乙烯基(MEH-)中自旋依赖性电荷载流子重组的基本物理性质和潜在的技术应用。 PPV),一种pi共轭聚合物,已被用作有机薄膜半导体。脉冲电检测磁共振(pEDMR)光谱用于观察顺磁性电荷载流子态(所谓的极化子)的相干自旋运动如何在不同的电荷载流子注入机制下控制薄(〜100nm)MEH-PPV层的宏观电导率。 pEDMR实验是在覆盖大约三个数量级(约20MHz至约10GHz)的频率以及约5K至约300k的温度下进行的。测量结果表明,在平衡双极注入下,MEH-PPV的电导率在任何温度下都受到极化子对(PP)机理的影响,极化机理是先前在文献中描述的自旋相关过程。实验表明,聚丙烯是弱交换和偶极耦合对,但它们受到质子诱导的超精细场的强烈影响。对相干极化子自旋运动的电学检测显示,室温下相干时间非常长(μs量级),这可能使PP符合量子信息应用的条件。还证明了PP机制可作为非凡灵敏(<50 nT Hz-1 / 2)的有机薄膜探针,该探针使用极化子旋磁比γ作为磁场标准。观察到伽马与温度,器件电流和-偏置以及MEH-PPV器件的退化无关。除了PP机理外,先前在文献中描述的另一种自旋依赖性过程被证实可显着影响MEH-PPV中的电导率:三重态激子极化子重组。

著录项

  • 作者

    Baker, William J.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Physics Electricity and Magnetism.;Physics Solid State.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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