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基于[]-融合诱导的高性能二氢卟吩/环戊二烯基光开关的合理设计。 (注:原文中[]部分内容缺失)

Rational design of []-fusion induced high-performance DHP/CPD based photoswitches.

作者信息

Han Li, Li Heming, Zuo Xi, Gao Quan, Li Dongmei, Cui Bin, Fang Changfeng, Liu Desheng

机构信息

School of Physics, State Key Laboratory of Crystal Materials, Shandong University, Jinan 250100, China.

出版信息

Phys Chem Chem Phys. 2020 Nov 25;22(45):26255-26264. doi: 10.1039/d0cp03827j.

Abstract

We report an effective strategy for improving the electronic transport and switching behaviors of dimethyldihydropyrene/cyclophanediene (DHP/CPD)-based molecular devices, an intriguing photoswitch that can be triggered by ultraviolet/visible (UV-vis) light irradiation. Aiming to obtain molecular devices with high on-off ratios, we assess a series of molecular designs formed by [e]-fusing different arenes on a conjugated macrocycle to modulate the photochemical and electronic properties. Here, the switching mechanism and transport properties of [e]-fused DHP/CPD-based nanojunctions are theoretically investigated by first-principles calculations. As a result, the large diversity in electrical conductance between the closed and open forms certifies the substantial switching behavior observed in these sandwich structures. The maximum on-off ratios in all designed photoswitches are greater than 102. Further analysis confirms the improvement of switching performance caused by [e]-fusion. Notably, in the benzo-fused molecular junctions, the maximum on-off ratio is up to 103, which is 55 times larger than that of the un-fused one. We also find that the position of the switch core can remarkably affect the performance of photoswichable nanodevices.

摘要

我们报道了一种用于改善基于二甲基二氢芘/环二烯(DHP/CPD)的分子器件的电子传输和开关行为的有效策略,该分子器件是一种有趣的可由紫外/可见光(UV-vis)照射触发的光开关。为了获得具有高开关比的分子器件,我们评估了一系列通过在共轭大环上[e]-稠合不同芳烃形成的分子设计,以调节光化学和电子性质。在此,通过第一性原理计算从理论上研究了基于[e]-稠合DHP/CPD的纳米结的开关机制和传输性质。结果,闭合和开放形式之间的电导存在很大差异,证明了在这些三明治结构中观察到的显著开关行为。所有设计的光开关中的最大开关比均大于102。进一步分析证实了由[e]-稠合引起的开关性能的改善。值得注意的是,在苯并稠合的分子结中,最大开关比高达103,比未稠合的分子结大55倍。我们还发现开关核心的位置可以显著影响可光开关纳米器件的性能。

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