作为高效光致变色材料的双(芫荽烯基)乙烯

IF 5.7 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Ryuta Imai, Shouhei Katao, Fumio Asanoma, Tsuyoshi Kawai and Mihoko Yamada
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引用次数: 0

摘要

我们在此报告了光致变色的 1,2-双(2-甲氧基-茱萸基)全氟环戊烯(1),它具有两个茱萸基作为二芳基烯的侧芳基单元。通过单晶 X 射线分析,发现 1 的一个对映体和一个手性异构体的另一个对映体分别在晶体中形成柱状结构。化合物 1 具有高效的光致变色特性,摩尔吸收系数高达 5.0 × 104 M-1 cm-1,在光环化反应和光环转化反应中的光化学量子产率分别高达 0.64 和 0.49。开式异构体和闭式异构体之间的异构体丰度比发生了变化,并且在弯曲结构的帮助下缩短了反应碳之间的距离,这一切都为这种高效率提供了合理的解释。此外,还在聚甲基丙烯酸甲酯薄膜中证明了 1 作为光致变色材料的应用可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bis(corannulenyl)ethene as an efficient photochromic material†

Bis(corannulenyl)ethene as an efficient photochromic material†

Bis(corannulenyl)ethene as an efficient photochromic material†

We herein report photochromic 1,2-bis(2-methoxy-corannulenyl)perfluorocyclopentene (1) possessing two corannulene moieties as the side aryl units of diarylethene. One enantiomer and the other enantiomer of one chiral atropisomer of 1 respectively forming columnar structures in the crystal were revealed via single-crystal X-ray analysis. Compound 1 exhibited an efficient photochromic behaviour with a large molar absorption coefficient of 5.0 × 104 M−1 cm−1, and significantly high photochemical quantum yields of 0.64 and 0.49 were demonstrated for photocyclization and photocycloreversion reactions, respectively. This high efficiency was rationalized by the changed abundance ratios of atropisomers between the open- and closed-isomers and the shortened distance between reactive carbons with the help of the curved structure. In addition, the application possibility of 1 as a photochromic material was demonstrated in a poly(methyl methacrylate) film.

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来源期刊
Journal of Materials Chemistry C
Journal of Materials Chemistry C MATERIALS SCIENCE, MULTIDISCIPLINARY-PHYSICS, APPLIED
CiteScore
10.80
自引率
6.20%
发文量
1468
期刊介绍: The Journal of Materials Chemistry is divided into three distinct sections, A, B, and C, each catering to specific applications of the materials under study: Journal of Materials Chemistry A focuses primarily on materials intended for applications in energy and sustainability. Journal of Materials Chemistry B specializes in materials designed for applications in biology and medicine. Journal of Materials Chemistry C is dedicated to materials suitable for applications in optical, magnetic, and electronic devices. Example topic areas within the scope of Journal of Materials Chemistry C are listed below. This list is neither exhaustive nor exclusive. Bioelectronics Conductors Detectors Dielectrics Displays Ferroelectrics Lasers LEDs Lighting Liquid crystals Memory Metamaterials Multiferroics Photonics Photovoltaics Semiconductors Sensors Single molecule conductors Spintronics Superconductors Thermoelectrics Topological insulators Transistors
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