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Triphenylamine and some of its derivatives as versatile building blocks for organic electronic applications

机译:Triphenylamine和其一些衍生物作为有机电子应用的多功能构件块

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摘要

This review article gives an overview of past and current activities in the Linear Conjugated Systems Group of Angers and in the IPOC - Functional Polymers Group of the Institute of Polymer Chemistry of Stuttgart on the use of triphenylamine (TPA) as versatile building block for organic electronics. In the first part, the properties of TPA itself are introduced including geometrical and energy level considerations. Dimerization of TPA to tetraphenylbenzidine upon electrochemical oxidation is highlighted. The blocking of TPA para-positions and its implications in terms of electroactivity is further discussed. The second part shows that dimerization of TPA as pendant redox-active moieties in polymers is a versatile strategy to crosslink polymer films. Coming from redox homopolymers the crosslinking strategy is extended towards conjugated redox polymers based on polythiophenes and block copolymers. Conductivity mechanisms and the influence of doping level on conductivity are probed with cyclic voltammetry coupled with in situ conductance and four-point probe measurements. The last part is dedicated to the use of TPA as an electron-donating block in the design of donor-pi-acceptor chromophores and their use as active material in organic photovoltaics. An overview of some relevant TPA-based push-pull molecules from the literature and our contribution to this field is presented emphasizing the progress of the photovoltaic performance of organic solar cells made over the last decade. (c) 2018 Society of Chemical Industry
机译:本综述文章概述了在线性共轭系统组的过去和当前活动,以及斯图加特高分子化学研究所的IPOC - 官能聚合物组在使用三苯胺(TPA)作为有机电子设备的多功能建筑块。在第一部分中,引入了TPA本身的特性,包括几何和能级考虑。突出了电化学氧化时TPA对四苯基苯胺的二聚化。进一步讨论了TPA对位置的阻断及其在电切断方面的影响。第二部分表明,TPA作为聚合物中的侧氧化还原活性部分的TPA的二聚化是交联聚合物膜的通用策略。来自氧化还原均聚物的交联策略基于聚噻吩和嵌段共聚物朝向共轭氧化还原聚合物延伸。电导率机制和掺杂水平对电导率的影响用与原位电导和四点探针测量相结合的循环伏安法探测。最后一部分致力于使用TPA作为供体 - PI-Conceptor发色团设计中的电子给块,并用作有机光伏中的活性材料。从文献中的一些相关TPA的推拉分子概述以及我们对该领域的贡献,强调了在过去十年中有机太阳能电池的光伏性能的进展。 (c)2018化学工业协会

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