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芘发色团中烷基的影响对芘-全氟萘共晶的机械响应。

Effect of Alkyl Groups in Pyrene Chromophore on the Mechanical Response of Pyrene-Octafluoronaphthalene Co-Crystals.

机构信息

Department of Chemistry and Biotechnology Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.

Department of Applied Chemistry Graduate School of Engineering, Osaka University Suita, Osaka, 565-0871, Japan.

出版信息

Chem Asian J. 2020 Apr 17;15(8):1349-1354. doi: 10.1002/asia.202000138. Epub 2020 Mar 23.

Abstract

Changes in the photophysical properties of pyrene (Py)-octafluoronaphthalene (OFN) co-crystals (Py⋅OFN) upon mechanical stimuli are described herein. The Py⋅OFN co-crystal showed a mechano-induced bathochromic shift in emission, and a similar tendency was observed for the 1,3,6,8-tetramethylpyrene-OFN co-crystal. These shifts are due to disruption of the microscopic molecular orientation in the co-crystal, which allows for excimer formation. In sharp contrast to the parent Py⋅OFN and methyl-substituted Py-OFN co-crystals, no mechano-induced bathochromic shift was observed when longer alkyl chains were introduced to the 1-, 3-, 6-, and 8-positions of the Py chromophore. This photophysical opposability against mechanical stimuli could be explained by the orthogonally oriented alkyl groups on the Py ring, which existed between two Py cores like pillars. This fixed OFN to maintain the face-to-face alternatively stacked structure of the co-crystal and thus prevented the formation of the Py excimer. The pillar effect demonstrated herein provides a rational design for co-crystalline systems that are photophysically stable against mechanical stresses.

摘要

本文描述了机械刺激下芘(Py)-全氟萘(OFN)共晶(Py⋅OFN)光物理性质的变化。Py⋅OFN 共晶表现出发射的机械诱导红移,1,3,6,8-四甲基芘-OFN 共晶也表现出类似的趋势。这些位移是由于共晶中微观分子取向的破坏,这允许形成激基缔合物。与母体 Py⋅OFN 和甲基取代的 Py-OFN 共晶形成鲜明对比的是,当将更长的烷基链引入 Py 生色团的 1-、3-、6-和 8-位时,没有观察到机械诱导的红移。这种对机械刺激的光物理拮抗作用可以用 Py 环上正交取向的烷基基团来解释,这些基团像柱子一样存在于两个 Py 核之间。本文展示的支柱效应为共晶系统提供了合理的设计,使其在光物理上对机械应力稳定。

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