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Microhydrated dihydrogen phosphate clusters probed by gas phase vibrational spectroscopy and first principles calculations

机译:通过气相振动光谱和第一原理计算探测微水合磷酸二氢盐簇

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摘要

We report infrared multiple photon dissociation (IRMPD) spectra of cryogenically-cooled HPO (HO) anions (n = 2–12) in the spectral range of the stretching and bending modes of the solute anion (600–1800 cm). The spectra cannot be fully understood using the standard technique of comparison to harmonic spectra of minimum-energy structures; a satisfactory assignment requires considering anharmonic effects as well as entropy-driven hydrogen bond network fluctuations. Aided by finite temperature ab initio molecular dynamics simulations, the observed changes in the position, width and intensity of the IRMPD bands with cluster size are related to the sequence of microsolvation. Due to stronger hydrogen bonding to the two terminal P[double bond, length as m-dash]O groups, these are hydrated before the two P–OH groups. By n = 6, all four end groups are involved in the hydrogen bond network and by n = 12, the cluster spectra show similarities to the condensed phase spectrum of HPO(aq). Our results reveal some of the microscopic details concerning the formation of the aqueous solvation environment around HPO, provide ample testing grounds for the design of model solvation potentials for this biologically relevant anion, and support a new paradigm for the interpretation of IRMPD spectra of microhydrated ions.
机译:我们报告了低温冷却的HPO(HO)阴离子(n = 2–12)在溶质阴离子的拉伸和弯曲模式的光谱范围(600–1800 cm)中的红外多光子解离(IRMPD)光谱。使用标准技术与最小能量结构的谐波光谱进行比较无法完全理解光谱。一个令人满意的分配需要考虑非谐波效应以及熵驱动的氢键网络波动。在有限的温度从头算分子动力学模拟的帮助下,观察到的IRMPD谱带的位置,宽度和强度随簇大小的变化与微溶剂化的顺序有关。由于与两个末端P [双键]的氢键较强,长度为m-O,这些基团在两个P-OH基团之前水合。在n = 6时,所有四个端基均参与氢键网络,在n = 12时,簇光谱显示出与HPO(aq)的凝聚相光谱相似的特征。我们的研究结果揭示了一些有关HPO周围水溶剂化环境形成的微观细节,为设计该生物学相关阴离子的模型溶剂化电位提供了充足的试验依据,并为解释微水合离子的IRMPD光谱提供了新的范例。

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