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首页> 外文期刊>Solar Energy >Effect of electron-donating groups on the electrochemical and optical properties of indoline substituents as hole transport materials: A computational study
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Effect of electron-donating groups on the electrochemical and optical properties of indoline substituents as hole transport materials: A computational study

机译:给电子基团对吲哚啉取代基作为空穴传输材料的电化学和光学性质的影响:计算研究

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摘要

The effect of electron-donating property of the groups attached to the indoline substituents with two different low-cost cores (tetraazafulvalene and pyrene) as new hole transport materials (HTMs) was studied on their electrochemical and optical behaviors. The calculations were carried out based on the theoretical approaches including density functional theory (DFT), time-dependent density functional theory (TD-DFT), and Marcus theory. Some important parameters, such as hole mobility, solubility and stability, absorption and emission spectra, Stokes shift, and HOMO/LUMO energies and distributions were obtained and discussed. It was found that the HOMO of all the designed structures is distributed more widely than their LUMO. The results showed that the maximum absorption band of the designed HTMs is red shifted as the electron-donating ability increases. It is also predicted that TAF/indoline-OMe and Py/indoline-NH2 with the hole mobility of 2.90 x 10(-3) and 1.51 x 10(-3) cm(2) V-1 s(-1), respectively give higher fill factor and short-circuit current density of the device.
机译:研究了作为两个新型空穴传输材料(HTM)的具有两个不同低成本核心(四氮富瓦烯和pyr)的吲哚取代基所连接基团的供电子性能,研究了它们的电化学和光学行为。根据包括密度泛函理论(DFT),随时间变化的密度泛函理论(TD-DFT)和Marcus理论在内的理论方法进行了计算。获得并讨论了一些重要的参数,例如空穴迁移率,溶解度和稳定性,吸收和发射光谱,斯托克斯位移以及HOMO / LUMO能量和分布。结果发现,所有设计结构的HOMO比其LUMO分布更广泛。结果表明,所设计的HTM的最大吸收带随着给电子能力的增加而红移。还可以预测TAF /二氢吲哚-OMe和Py /二氢吲哚-NH2的空穴迁移率分别为2.90 x 10(-3)和1.51 x 10(-3)cm(2)V-1 s(-1)提供更高的填充系数和设备的短路电流密度。

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