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气相与溶液中24-冠-8/质子化色氨酸和24-冠-8/质子化丝氨酸非共价配合物的热力学反转与结构关联:量子化学分析

Thermodynamic Reversal and Structural Correlation of 24-Crown-8/Protonated Tryptophan and 24-Crown 8/Protonated Serine Noncovalent Complexes in the Gas Phase vs in Solution: Quantum Chemical Analysis.

作者信息

Oh Young-Ho, Lee So Yeon, Kong Xianglei, Oh Han Bin, Lee Sungyul

机构信息

Department of Chemistry, Konkuk University, Seoul 05029, Republic of Korea.

Department of Applied Chemistry, Kyung Hee University, Gyeonggi 17104, Republic of Korea.

出版信息

ACS Omega. 2024 May 23;9(22):23793-23801. doi: 10.1021/acsomega.4c01782. eCollection 2024 Jun 4.

Abstract

We investigate the structures of 24-crown-8/H/l-tryptophan (CR/TrpH) and 24-crown-8/H/l-serine (CR/SerH) noncovalent host-guest complex both in the gas phase and in an aqueous solution by quantum chemical methods. The Gibbs free energies of the complex in the two phases are calculated to determine the thermodynamically most favorable conformer in each phase. Our predictions indicate that both the carboxyl and the ammonium in CR/TrpH and the ammonium in the CR/SerH complexes in the lowest Gibbs free energy configurations form hydrogen bonds (H-bonds) with the CR host in the gas phase, while the conformer with the "naked" (devoid of H-bond with the CR host) -COH (and/or -OH) is much less favorable (Gibbs free energy higher by >3.6 kcal/mol). In the solution phase, however, a "thermodynamic reversal" occurs, making the higher Gibbs free energy gas-phase CR/TrpH and CR/SerH conformers thermodynamically more favorable under the influence of solvent molecules. Consequently, the global minimum Gibbs free energy structure in solution is structurally correlated with the thermodynamically much less gas-phase conformer. Discussions are provided concerning the possibility of elucidating host-guest-solvent interactions in solution from the gas-phase host-guest configurations in molecular detail.

摘要

我们采用量子化学方法研究了气相和水溶液中24-冠-8/H/L-色氨酸(CR/TrpH)和24-冠-8/H/L-丝氨酸(CR/SerH)非共价主客体复合物的结构。计算了复合物在两相中的吉布斯自由能,以确定各相中热力学上最有利的构象。我们的预测表明,在最低吉布斯自由能构型下,CR/TrpH中的羧基和铵基以及CR/SerH复合物中的铵基在气相中与CR主体形成氢键(H键),而具有“裸露”(与CR主体无氢键)-COH(和/或-OH)的构象则不太有利(吉布斯自由能高出>3.6 kcal/mol)。然而,在溶液相中,发生了“热力学反转”,使得吉布斯自由能较高的气相CR/TrpH和CR/SerH构象在溶剂分子的影响下在热力学上更有利。因此,溶液中全局最小吉布斯自由能结构在结构上与热力学上不太有利的气相构象相关。讨论了从分子细节上的气相主客体构型阐明溶液中主客体-溶剂相互作用的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fff7/11154897/68d122be64fb/ao4c01782_0001.jpg

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