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类冰水分子簇中氢氧根离子的结构与溶剂化动力学:CCSD(T)方法与卡-帕里尼罗分子动力学研究

Structure and solvation dynamics of the hydroxide ion in ice-like water clusters: a CCSD(T) and car-parrinello molecular dynamics study.

作者信息

Lemke Kono H

机构信息

Department of Earth Sciences, University of Hong Kong, Pokfulam Road, Hong Kong, SAR.

出版信息

Phys Chem Chem Phys. 2021 Sep 14;23(34):18990-18998. doi: 10.1039/d1cp02524d. Epub 2021 Aug 24.

DOI:10.1039/d1cp02524d
PMID:34612437
Abstract

Using MP2, CCSD(T) electronic structure theory and ab initio molecular dynamics simulations, we explore the structure, solvation dynamics and vibrational spectra of OH(HO) clusters. Our study reports new cubic and fused cubic global minima structures of OH(HO) for n = 8-26 with surface and interior solvation arrangements. In the case of OH(HO), we show that MP2 and CCSD(T) calculations predict global minima structures with the hydroxide ion occupying the interior region of a densely packed cubic cluster that is secured by ionic hydrogen bonds. More importantly, results from ab initio molecular dynamics simulations of OH(HO) demonstrate that the hydroxide ion remains in the cluster interior and hexa-coordinated, irrespective of the temperature, up to around 175 K, then incrementally transitions from a surface-exposed penta- (170-200 K), to a tetra- (225 K) to a tri-coordinated OH(HO) structure at 300 K. Building on our temperature-dependent vibrational power spectra, we are also able to disentangle structure and temperature effects on individual spectral contributions arising from water molecules located in the inner and outer shell of OH(HO). Some of these theoretical results provide valuable guidance for the interpretation of IRMPD spectra of small hydroxide-water clusters, but there are also several intriguing implications of these results, in particular, for the solvation of the OH ion at the surface of water nanodroplets and aqueous interfaces.

摘要

利用MP2、CCSD(T)电子结构理论和从头算分子动力学模拟,我们探索了OH(HO)团簇的结构、溶剂化动力学和振动光谱。我们的研究报道了n = 8 - 26的OH(HO)新的立方和融合立方全局极小值结构,以及表面和内部溶剂化排列。对于OH(HO),我们表明MP2和CCSD(T)计算预测的全局极小值结构中,氢氧根离子占据由离子氢键固定的紧密堆积立方团簇的内部区域。更重要的是,OH(HO)的从头算分子动力学模拟结果表明,氢氧根离子在团簇内部保持六配位,在高达约175 K的温度下均如此,然后逐渐从表面暴露的五配位(170 - 200 K)转变为四配位(225 K),并在300 K时转变为三配位的OH(HO)结构。基于我们的温度相关振动功率谱,我们还能够区分结构和温度对OH(HO)内壳层和外壳层水分子产生的各个光谱贡献的影响。其中一些理论结果为解释小氢氧化物 - 水团簇的红外多光子解离光谱提供了有价值的指导,但这些结果也有一些有趣的含义,特别是对于水纳米液滴表面和水相界面处OH离子的溶剂化。

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Structure and solvation dynamics of the hydroxide ion in ice-like water clusters: a CCSD(T) and car-parrinello molecular dynamics study.类冰水分子簇中氢氧根离子的结构与溶剂化动力学:CCSD(T)方法与卡-帕里尼罗分子动力学研究
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