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N,N'-取代吲哚作为易于获得的红光光开关,具有可调热半衰期。

N,N'-Disubstituted Indigos as Readily Available Red-Light Photoswitches with Tunable Thermal Half-Lives.

机构信息

Department of Chemistry & IRIS Adlershof, Humboldt-Universität zu Berlin , Brook-Taylor-Strasse 2, 12489 Berlin, Germany.

Laboratoire CEISAM, UMR CNRS 6230, Université de Nantes , 2 Rue de la Houssinière, BP 92208, 44322 Nantes Cedex 3, France.

出版信息

J Am Chem Soc. 2017 Oct 25;139(42):15205-15211. doi: 10.1021/jacs.7b08726. Epub 2017 Oct 11.

Abstract

Some rare indigo derivatives have been known for a long time to be photochromic upon irradiation with red light, which should be advantageous for many applications. However, the absence of strategies to tune their thermal half-lives by modular molecular design as well as the lack of proper synthetic methods to prepare a variety of such molecules from the parent indigo dye have so far precluded their use. In this work, several synthetic protocols for N-functionalization have been developed, and a variety of N-alkyl and N-aryl indigo derivatives have been prepared. By installation of electron-withdrawing substituents on the N-aryl moieties, the thermal stability of the Z-isomers could be enhanced while maintaining the advantageous photoswitching properties upon irradiation with red light (660 nm LED). Both experimental data and computational results suggest that the ability to tune thermal stability without affecting the dyes' absorption maxima originates from the twisted geometry of the N-aryl groups. The new indigo photoswitches reported are expected to have a large impact on the development of optical methods and applications in both life and material sciences.

摘要

一些罕见的靛蓝衍生物长期以来一直被证明在红光照射下具有光致变色性,这对于许多应用应该是有利的。然而,由于缺乏通过模块化分子设计来调节其热半衰期的策略,以及缺乏从母体靛蓝染料制备各种此类分子的适当合成方法,迄今为止,它们的应用受到了限制。在这项工作中,已经开发了几种 N-官能化的合成方案,并制备了各种 N-烷基和 N-芳基靛蓝衍生物。通过在 N-芳基部分上安装吸电子取代基,可以增强 Z-异构体的热稳定性,同时保持在红光(660nm LED)照射下的有利光致变色性能。实验数据和计算结果表明,在不影响染料吸收最大值的情况下调节热稳定性的能力源于 N-芳基基团的扭曲几何形状。所报道的新型靛蓝光开关有望对生命和材料科学中光学方法和应用的发展产生重大影响。

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