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Structure–Function Relationship of Organic Semiconductors: Detailed Insights From Time-Resolved EPR Spectroscopy

机译:有机半导体的结构-功能关系:时间分辨EPR光谱的详细见解

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摘要

Organic photovoltaics (OPV) is a promising technology to account for the increasing demand for energy in form of electricity. Whereas the last decades have seen tremendous progress in the field witnessed by the steady increase in efficiency of OPV devices, we still lack proper understanding of fundamental aspects of light-energy conversion, demanding for systematic investigation on a fundamental level. A detailed understanding of the electronic structure of semiconducting polymers and their building blocks is essential to develop efficient materials for organic electronics. Illuminating conjugated polymers not only leads to excited states, but sheds light on some of the most important aspects of device efficiency in organic electronics as well. The interplay between electronic structure, morphology, flexibility, and local ordering, while at the heart of structure—function relationship of organic electronic materials, is still barely understood. (Time-resolved) electron paramagnetic resonance (EPR) spectroscopy is particularly suited to address these questions, allowing one to directly detect paramagnetic states and to reveal their spin-multiplicity, besides its clearly superior spectral resolution compared to optical methods. This article aims at giving a non-specialist audience an overview of what EPR spectroscopy and particularly its time-resolved variant (TREPR) can contribute to unraveling aspects of structure–function relationship in organic semiconductors.
机译:有机光伏(OPV)是一种有前途的技术,可以解决以电形式出现的能源需求的增长。尽管在过去的几十年中,OPV器件效率的不断提高见证了该领域的巨大进步,但我们仍然对光能转换的基本方面缺乏适当的了解,因此需要从根本上进行系统的研究。对半导体聚合物及其结构单元的电子结构的详细了解对于开发用于有机电子产品的高效材料至关重要。照明共轭聚合物不仅会导致激发态,而且还阐明了有机电子器件中器件效率的一些最重要方面。电子结构,形态,柔韧性和局部有序性之间的相互作用,尽管仍是有机电子材料的结构-功能关系的核心,但仍鲜为人知。 (时间分辨)电子顺磁共振(EPR)光谱特别适合解决这些问题,除了可以比光学方法明显改善光谱分辨率外,还可以直接检测顺磁性状态并揭示其自旋多重性。本文旨在向非专业人士概述什么是EPR光谱,尤其是其时间分辨型(TREPR)有助于弄清有机半导体中结构-功能关系的各个方面。

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