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Structure Prediction of Bis(amino acidato)copper(Ⅱ) Complexes with a New Force Field for Molecular Modeling

机译:双(氨基酸)铜(Ⅱ)络合物与新力场的分子建模结构预测

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摘要

This article presents a new force field whose parameterization was based on experimental crystal data and quantum chemically obtained vacuum structures of a series of copper(co) complexes with aliphatic a-amino acids and their N-alkyl derivatives, along with the SPC/E water model. The ability of the new force field to reproduce and predict the structural properties of the copper(co) complexes in the gas phase, in simulated crystalline surroundings, and solvated in water is examined. Molecular dynamics (MD) simulations with the new force field yielded time-average structural coordinates of bis(glycinato)copper(co) [the only one of 25 modeled bis(amino acidato)copper(co) systems with published experimental structural data in aqueous solution at room temperature] within the experimental error values. The study of the cis-trans isomerization of bis(glycinato)copper(co) in aqueous medium at 300 K using the quantum chemical polarized continuum model revealed a small energy difference (5 kJ mol-1) between the solvated cis and trans minima, in line with the MD energy estimations. The new force field proved promising in predicting the association of the complexes in aqueous solution and formation of a nucleus of crystallization.
机译:本文介绍了一种新的力领域,其参数化基于实验晶体数据和量子化学获得的一系列铜(CO)配合物的真空结构,其与脂族α-氨基酸及其N-烷基衍生物以及SPC / E水以及水模型。研究了新力领域再现和预测气相中的铜(CO)复合物的结构性能,在模拟结晶周边和水中溶剂化的能力。具有新力场的分子动力学(MD)模拟,得到了双(甘油蛋白)铜(CO)的时间平均结构坐标(CO)[25种模拟的双(氨基酸)铜(CO)铜(CO)系统中的仅具有公开的水性结构数据在室温下的溶液]在实验误差值中。使用量子化学偏振的连续核模型在300k下水性介质中的双(甘油酸甘油酯)铜(CO)的CIS-Trans-Trans异构化的研究显示溶剂化的顺式和反式最小值之间的小能量差(5 kJ mol-1),符合MD能量估计。新力领域证明有希望预测络合物在水溶液中的结合和结晶核的形成。

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    Institute for Medical Research and Occupational Health Ksaverska cesta 2 P.O. Box 291 HR-10001 Zagreb Croatia and Ruder Boskovic Institute Bijenicka cesta 54 HR-10000 Zagreb Croatia;

    Institute for Medical Research and Occupational Health Ksaverska cesta 2 P.O. Box 291 HR-10001 Zagreb Croatia and Ruder Boskovic Institute Bijenicka cesta 54 HR-10000 Zagreb Croatia;

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  • 正文语种 eng
  • 中图分类 化学键的量子力学理论;
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