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Twist and shout : a surprising synergy between aryl and N-substituents defines the computed charge transport properties in a series of crystalline diketopyrrolopyrroles

机译:扭曲和大喊:芳基和N-取代基之间令人惊讶的协同作用,定义了一系列结晶二酮吡咯并吡咯中的电荷传输性质

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摘要

The influence of systematic variation of aryl and N-substitution on predicted charge transport behaviour in a series of crystalline diketopyrrolopyrroles is evaluated. A correct combination of substituents is revealed to maximise those properties which dictate device performance in organic single crystals based upon this structural motif. For electron transport, furan and N-alkyl substitution emerge as optimal molecular design strategies, whilst phenyl structures bearing N-benzyl substituents are shown to offer the most significant promise as highly sought after crystalline hole transport materials.
机译:评估了一系列晶体二酮吡咯并吡咯中芳基和N取代的系统变化对预测的电荷传输行为的影响。揭示了取代基的正确组合,以最大化基于该结构基序决定有机单晶中器件性能的那些性能。对于电子传输,呋喃和N-烷基取代是最理想的分子设计策略,而带有N-苄基取代基的苯基结构被证明是最有希望的结晶空穴传输材料。

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