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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Charge carrier mobility in sulphonated and non-sulphonated Ni phthalocyanines: experiment and quantum chemical calculations
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Charge carrier mobility in sulphonated and non-sulphonated Ni phthalocyanines: experiment and quantum chemical calculations

机译:磺化和非磺化镍酞菁中的载流子迁移率:实验和量子化学计算

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摘要

The objective of this interdisciplinary paper was to study theoretically and experimentally the electronic part of charge carrier transport in the class of sodium salts of sulphonated Ni phthalocyanine as candidates for p-type channels in organic field-effect transistors. These materials were selected because of their enhanced solubility as compared to their non-sulphonated counterparts. The values of the field-effect charge carrier mobility determined on the OFET structures using NiPc(SO3Na)x films were much higher than the charge carrier mobility obtained on the respective device prepared from non-substituted phthalocyanine. In order to explain differences between charge carrier mobility of sulphonated and non-sulphonated Ni phthalocyanines, quantum chemistry studies of molecular aggregates were performed. Quantum chemistry modeling of the semiconductive molecular systems is new and progressive – we highlighted factors at the molecular level which led to the enhancement of the charge carrier mobility in systems containing SO3Na groups.
机译:该跨学科论文的目的是从理论和实验上研究磺化镍酞菁钠盐类中的电荷载流子传输的电子部分,作为有机场效应晶体管中p型沟道的候选物。选择这些材料是因为与未磺化的材料相比,它们具有更高的溶解度。使用NiPc(SO3Na)x膜在OFET结构上确定的场效应电荷载流子迁移率值比在由未取代的酞菁制备的相应器件上获得的电荷载流子迁移率高得多。为了解释磺化和未磺化的镍酞菁的载流子迁移率之间的差异,进行了分子聚集体的量子化学研究。半导体分子系统的量子化学建模是新的和进步的–我们重点介绍了分子水平上的因素,这些因素导致了含SO3Na基团的系统中载流子迁移率的提高。

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