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Temperature Dependence of Structure and Dynamics of the Hydrated Ca2+ Ion According to ab initio Quantum Mechanical Charge Field and Classical Molecular Dynamics

机译:从头算量子力学电荷场和经典分子动力学看水合Ca2 +离子的结构和动力学的温度依赖性

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摘要

Simulations using ab initio quantum mechanical charge field molecular dynamics (QMCF MD) and classical molecular dynamics using two-body and three-body potentials were performed to investigate the hydration of the Ca2+ ion at different temperatures. Results from the simulations demonstrate significant effects of temperature on solution dynamics and the corresponding composition and structure of hydrated Ca2+. Substantial increase in ligand exchange events was observed in going from 273.15 K to 368.15 K, resulting in a redistribution of coordination numbers to lower values. The effect of temperature is also visible in a red-shift of the ion-oxygen stretching frequencies, reflecting weakened ligand binding. Even the moderate increase from ambient to body temperature leads to significant changes in the properties of Ca2+ in aqueous environment.
机译:使用从头算起的量子机械电荷场分子动力学(QMCF MD)和使用两体和三体电势的经典分子动力学进行了模拟,以研究Ca2 +离子在不同温度下的水合作用。模拟结果表明温度对溶液动力学以及水合Ca2 +的相应组成和结构有重大影响。观察到配体交换事件从273.15 K增加到368.15 K显着增加,导致配位数重新分配到较低的值。温度的影响在离子-氧气拉伸频率的红移中也很明显,反映出配体结合减弱。即使从环境温度到体温的适度升高,也会导致水性环境中Ca2 +的性质发生重大变化。

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