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手性从手性单胺转移至带有苄基酰胺取代基的间苯二甲酸二酰胺连接的双锌卟啉。

Chirality Transfer from Chiral Monoamines to an m-Phthalic Diamide-Linked Zinc Bisporphyrinate with a Benzylamide Substituent.

作者信息

Hu Qingyun, Zhuo Congcong, Wang Yong, Hu Chuanjiang, Lang Jianping

机构信息

State and Local Joint Engineering Laboratory for Novel Functional Polymeric Materials, College of Chemistry, Chemical Engineering and Materials Science, Soochow University , Suzhou 215123, Jiangsu, P. R. China.

Applied Technology College of Soochow University , Suzhou 215325, Jiangsu P.R. China.

出版信息

Inorg Chem. 2017 Sep 5;56(17):10204-10214. doi: 10.1021/acs.inorgchem.7b00815. Epub 2017 Aug 14.

Abstract

An m-phthalic diamide-linked bisporphyrin with a benzylamide substituent has been designed and synthesized. It has two types of carbonyl groups. In the solution of this zinc bisporphyrinate, these carbonyl groups are involved in the formation of two different Zn-O coordination interactions: one is formed between neighboring zinc bisporphyrinates; another is formed within zinc bisporphyrinate. The chirality sensing abilities of this zinc porphyrinate to a number of chiral monoamines have been examined. When zinc bisporphyrinate was mixed with a series of chiral monoamines, the signs of the circular dichroism spectra for the chiral monoamines of the same handedness with an aryl group as the substituent are just opposite to those with an alkyl group as the substituent. NMR studies reveal that stepwise coordinations lead to 1:1 and 1:2 host-guest complexes. The structure of the 1:1 host-guest complex was confirmed by crystallography, it is the first time that a 1:1 host-guest complex formed between zinc bisporphyrinate and a chiral monoamine has been crystallographically characterized. The structure reveals that there is an intramolecular hydrogen bond between the amide oxygen and the coordinated NH. We further investigated the chirality transfer mechanism by density functional theory calculations. Our studies suggest that the interactions between the linker and guests in this bisporphyrin system are crucial in the chirality transfer process, and the nature of the bulkiest substituent of chiral monoamines makes a difference. For R-type guests, with an alkyl group, the steric repulsion makes the conformer A more energetically favorable, which leads to the anticlockwise twist and negative Cotton effect. However, with an aryl group, the π-π interaction makes the conformer B more energetically favorable, which leads to the clockwise twist and positive Cotton effect.

摘要

一种带有苄基酰胺取代基的间苯二甲酰胺连接的双卟啉已被设计并合成。它有两种类型的羰基。在这种双锌卟啉的溶液中,这些羰基参与形成两种不同的Zn-O配位相互作用:一种是在相邻的双锌卟啉之间形成;另一种是在双锌卟啉内部形成。已研究了这种锌卟啉对多种手性单胺的手性传感能力。当双锌卟啉与一系列手性单胺混合时,以芳基为取代基的相同手性的手性单胺的圆二色光谱的符号与以烷基为取代基的手性单胺的圆二色光谱的符号正好相反。核磁共振研究表明逐步配位会导致形成1:1和1:2的主客体配合物。通过晶体学确定了1:1主客体配合物的结构,这是首次对手性单胺与双锌卟啉之间形成的1:1主客体配合物进行晶体学表征。该结构表明酰胺氧与配位的NH之间存在分子内氢键。我们通过密度泛函理论计算进一步研究了手性转移机制。我们的研究表明,在这种双卟啉体系中连接体与客体之间的相互作用在手性转移过程中至关重要,并且手性单胺最大取代基的性质会产生影响。对于R型客体,带有烷基时,空间排斥使得构象体A在能量上更有利,这导致逆时针扭曲和负的科顿效应。然而,带有芳基时,π-π相互作用使得构象体B在能量上更有利,这导致顺时针扭曲和正的科顿效应。

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