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Theoretical Studies on Dicyanoanthracenes as Organic Semiconductor Materials: Reorganization Energy

机译:二氰基蒽作为有机半导体材料的理论研究:重组能

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Internal reorganization energy due to the structural relaxation in hole or electron hopping mechanism is one of the measurements of key indices in designing an organic thin film transistor (OTFT) for flexible display devices. In this study, the reorganization energies of dicyanoanthracenes for the hole and electron transfer were estimated by adiabatic potential energy surface and normal mode analysis method in order to examine the effect on the energies for the positional variation of the cyano substituents in the anthracene as a protocol of acenes to design an organic field effect transistor. The reorganization energy for the hole transfer was reduced considerably upon cyanation of anthracene, especially at the 9,10- positions of anthracene, and the origin of the reduction was interpreted in terms of understanding the coupling of vibrational modes to the hole transfer.
机译:由于空穴或电子跳跃机制的结构弛豫而产生的内部重组能量是设计用于柔性显示装置的有机薄膜晶体管(OTFT)的关键指标之一。在这项研究中,通过绝热势能面和正态分析方法估算了双氰基蒽的空穴和电子转移的重组能,以研究蒽中氰基取代基的位置变化对能量的影响。的并苯设计有机场效应晶体管。蒽氰化后,尤其是在蒽的9,10-位时,空穴转移的重组能大大降低,并且根据理解振动模式与空穴转移的耦合来解释减少的原因。

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