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扭曲薁类化合物的手性光学性质:实验和计算研究。

Chiroptical Properties of Twisted Acenes: Experimental and Computational Study.

机构信息

Institute of Chemistry, The Hebrew University of Jerusalem, Edmond J. Safra Campus, Jerusalem, Israel.

出版信息

Chemistry. 2019 Mar 1;25(13):3279-3285. doi: 10.1002/chem.201805728. Epub 2019 Feb 14.

Abstract

Acenes that are twisted out of planarity are expected to display chiroptical properties. However, the effect of twisting on the chiroptical properties of acenes has not been investigated computationally or experimentally. Herein, we present a computational investigation of the chiroptical properties of anthracenes to pentacenes, combined with an experimental study using a series of helically locked acenes, twisted to different torsional angles in their enantiopure form. The lowest energy transition, which is relatively weak in acenes, becomes dominant in their circular dichroism spectra upon twisting. We find that the rotational strength of acenes consistently increases with increasing twist. The experimental data obtained from enantiopure tethered twistacenes show the same trend as the calculated result, with a strong Cotton effect and anisotropy factor, rendering twisted acenes as excellent chiroptical materials.

摘要

扭曲出平面的并五苯有望显示手性光学性质。然而,扭转对并五苯的手性光学性质的影响尚未在计算或实验上进行研究。在此,我们结合一系列手性锁定并五苯的实验研究,对蒽类化合物到芴类化合物的手性光学性质进行了计算研究,这些化合物在其对映纯形式下被扭曲到不同的扭转角度。在扭转过程中,在并五苯中相对较弱的最低能量跃迁在圆二色光谱中变得占主导地位。我们发现并五苯的旋光强度随着扭转的增加而持续增加。从对映纯键合扭曲并五苯获得的实验数据与计算结果呈现相同的趋势,具有强烈的科顿效应和各向异性因子,使扭曲的并五苯成为优秀的手性光学材料。

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