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二环己基葫芦[6]脲和六环己基葫芦[6]脲与烷基二铵离子的主客体络合作用:一项比较研究。

Host-guest complexation of di-cyclohexanocucurbit[6]uril and hexa-cyclohexanocucurbit[6]uril with alkyldiammonium ions: a comparative study.

作者信息

Fang Guo-Sheng, Sun Wen-Qi, Zhao Wen-Xuan, Lin Rui-Lian, Tao Zhu, Liu Jing-Xin

机构信息

College of Chemistry and Chemical Engineering, Anhui University of Technology, Maanshan 243002, China.

出版信息

Org Biomol Chem. 2016 Jan 14;14(2):674-679. doi: 10.1039/c5ob01982f.

Abstract

The host-guest complexation of symmetrical di-cyclohexanocucurbit[6]uril (Cy2Q[6]) and hexa-cyclohexanocucurbit[6]uril (Cy6Q[6]) with a series of alkyldiammonium ions (H(3+)N(CH(2))nNH(3+), n = 2-8) has been studied both in solution and in the gas phase. (1)H NMR data indicate that all alkyldiammonium ions have inclusion interactions with both hosts except for the ethanediammonium ion. In addition, if the alkyl chain of the alkyldiammonium ion is longer than n = 5 methylene groups, compressed conformation may occur, which depends on the cavity shape of the hosts and the length of the alkyl chain. Isothermal titration calorimetry (ITC) studies point out that the host-guest complexations of both hosts with the latter five alkyldiammonium ions are enthalpically driven. The comparison of the thermodynamic data reveals that the enthalpies of the van der Waals interactions contribute more to the host-guest complexation enthalpy than the ion-dipole interactions. The enthalpic gain arises from the van der Waals interactions and the reduction of entropy upon the host-guest complexation is strongly affected by the cavity shape of the host. Gas phase structures of long alkyldiammonium guests within both hosts are completely different from those in aqueous solution.

摘要

对称二环己基葫芦[6]脲(Cy2Q[6])和六环己基葫芦[6]脲(Cy6Q[6])与一系列烷基二铵离子(H(3+)N(CH(2))nNH(3+),n = 2 - 8)的主客体络合作用已在溶液和气相中进行了研究。1H NMR数据表明,除乙二铵离子外,所有烷基二铵离子与两种主体都存在包合相互作用。此外,如果烷基二铵离子的烷基链长于n = 5个亚甲基,则可能会出现压缩构象,这取决于主体的空腔形状和烷基链的长度。等温滴定量热法(ITC)研究指出,两种主体与后五种烷基二铵离子的主客体络合作用是由焓驱动的。热力学数据的比较表明,范德华相互作用的焓对主客体络合焓的贡献比离子 - 偶极相互作用更大。焓增源于范德华相互作用,主客体络合时熵的降低受到主体空腔形状的强烈影响。两种主体中长链烷基二铵客体的气相结构与水溶液中的结构完全不同。

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