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Host-guest assembly for highly sensitive probing of a chiral mono-alcohol with a zinc trisporphyrinate

机译:主客体组装用于高灵敏度地探测三卟啉锌手性一元醇

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摘要

A zinc trisporphyrinate has been developed as a chirality sensor for chiral mono-alcohols. In its structure, there are two “spaces” surrounded by three porphyrin moieties, which allow guests to fill in. It has shown extremely high CD sensitivity for a chiral mono-alcohol with a naphthyl substituent, 1-(1-naphthyl)ethanol, at μM level, which is at least three orders of magnitude lower concentration than previous reports. A crystallographic study of the host-guest complex reveals the binding of 1-(1-naphthyl)ethanol to the zinc trisporphyrinate is greatly enhanced by multipoint interactions, such as coordination interactions, hydrogen bonding, π-π and CH···π interactions etc. Spectroscopic studies suggest the corresponding binding constant K1 is over 105 M−1, which is two or three orders of magnitude larger than other mono-alcohols. Among porphyrin systems, this trisporphyrin have the strongest binding affinity for 1-(1-naphthyl)ethanol, which leads to the highest CD sensitivity.
机译:已经开发了三卟啉锌作为手性一元醇的手性传感器。在其结构中,有两个被三个卟啉部分包围的“空间”,可让客人进行填充。对于带有萘基取代基,1-(1-萘基)乙醇的手性一元醇,它显示出极高的CD敏感性。在μM水平下,浓度比以前的报告至少低三个数量级。对客体-客体复合物的晶体学研究表明,1-(1-萘基)乙醇与三卟啉锌的结合通过多点相互作用(例如配位相互作用,氢键,π-π和CH··π相互作用)大大增强。光谱研究表明,相应的结合常数K1超过10 5 M -1 ,比其他一元醇大两个或三个数量级。在卟啉体系中,该三卟啉对1-(1-萘基)乙醇具有最强的结合亲和力,从而导致最高的CD敏感性。

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