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氧化三嗪胺中的电子和振动激子耦合

Electronic and vibrational exciton coupling in oxidized trianglimines.

作者信息

Szymkowiak Joanna, Kwit Marcin

机构信息

Department of Chemistry, Adam Mickiewicz University, Poznan, Poland.

Wielkopolska Center for Advanced Technologies (WCAT), Poznan, Poland.

出版信息

Chirality. 2018 Feb;30(2):117-130. doi: 10.1002/chir.22783. Epub 2017 Nov 7.

Abstract

Readily available chiral trianglimine and their (poly)oxygenated congeners represent a unique class of macrocyclic rigid compounds optimal for testing electronic and vibrational circular dichroism exciton chirality methods. Electronic and vibrational circular dichroism spectra of such trianglimines are strongly affected by polar substituents in macrocycle skeletons. Double substitution by OH groups in each aromatic fragment of the macrocycle causes sign reversal of the exciton couplet in the region of the strongest UV absorption. On the other hand, electronic circular dichroism spectrum of the macrocycle having 2 methoxy groups shows 2 exciton couplets-the long-wavelength positive and the second of the negative sign, observed at the shorter wavelengths. VCD spectra of macrocyclic imines show vibrational exciton couplets in the region of strong C=N stretches. The signs of these couplets are positive and the opposite of the diamine chirality. For trianglimine macrocycles the interpretation of VCD spectra in terms of excitons is much more convincing than for electronic circular dichroism spectra. By contrast, trans-1,2-diaminocyclohexane-based vicinal diimines, being a one-third of the respective macrocycle, do not exhibit any vibrational exciton effect. Experimental data were confronted with DFT calculations. We observed good-to-excellent agreement between experimental and computed data.

摘要

易于获得的手性三角胺及其(多)氧化同系物代表了一类独特的大环刚性化合物,非常适合用于测试电子圆二色性和振动圆二色性激子手性方法。此类三角胺的电子圆二色性和振动圆二色性光谱会受到大环骨架中极性取代基的强烈影响。大环每个芳香片段中的羟基双取代会导致在最强紫外吸收区域激子偶合的符号反转。另一方面,具有两个甲氧基的大环的电子圆二色性光谱显示出两个激子偶合——长波长的正激子偶合和在较短波长处观察到的负号的第二个激子偶合。大环亚胺的VCD光谱在强C=N伸缩振动区域显示出振动激子偶合。这些偶合的符号为正,与二胺手性相反。对于三角胺大环,用激子来解释VCD光谱比解释电子圆二色性光谱更有说服力。相比之下,基于反式1,2-二氨基环己烷的邻位二亚胺,其大小为相应大环的三分之一,不表现出任何振动激子效应。实验数据与DFT计算结果进行了对比。我们观察到实验数据和计算数据之间有良好到出色的一致性。

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