A Sustainable Preparation of Functional Perylenophanes by Domino Metathesis

H. Langhals, Maximilian Rauscher, P. Mayer
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引用次数: 1

Abstract

A sustainable four-step synthesis of soluble perylenophanes for applications as fluorescent optical functional materials is presented and even allows upscaling because of starting with technical bulk products. Thus, terminal alkenylnitriles were alkylated reduced to amines, condensed with perylenetetracarboxylic bisanhydride and cyclised to cyclophanes by means of double cross metathesis in yields until 69% of isolated dyes. The first metathesis by means of the second-generation Hoveyda-Grubbs-catalyst brings the remaining reactive olefinic groups close together favouring the ring-closure to the cyclophanes where the locked neighboring of chromophores in a skew arrangement induce strong exciton interactions. The latter cause an increased the Stokes’ separation by means of a moderate hypsochromic shift of light absorption and a stronger bathochromic shift of fluorescence. Various applications such as for lasers, photonics, solar collectors or in analytics are discussed.
多米诺复分解法制备功能性过烯酸的研究
提出了一种可持续的四步法合成可溶过二烯醚,用于荧光光学功能材料,甚至可以扩大规模,因为从技术批量产品开始。因此,末端烯基腈被烷基化还原为胺,与苝四羧酸二酸酐缩合,并通过双交叉复分解环化成环番,收率达到69%。通过第二代hoveyda - grubbs催化剂进行的第一次复分解使剩余的活性烯烃基团靠近在一起,有利于环烷的环封闭,在环烷中,发色团的锁定相邻以歪斜排列诱导强烈的激子相互作用。后者通过适度的光吸收的次色移和更强的荧光的深色移来增加Stokes分离。各种应用,如激光,光子学,太阳能集热器或在分析进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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