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Microsolvation of NO3-: structural exploration and bonding analysis

机译:NO3的微溶剂化:结构探索和键合分析

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摘要

Exploration of the potential energy surfaces (PESs) of various microsolvated species associated with the microsolvation of the nitrate anion using density functional theory methods uncovers a rich and complex structural diversity previously unnoticed in the scientific literature for the [NO3(H2O)(n)](-), n = 1-6 clusters. Two types of interactions are at play in stabilizing the clusters: traditional water to water and charge assisted nitrate to water hydrogen bonds (HBs). The formal negative charge on oxygen atoms in nitrate strengthens hydrogen bonding among water molecules. There is outstanding agreement between available experimental data (sequential hydration enthalpies, IR spectra, and vertical detachment energies) and the corresponding expectation values obtained from our structures. Each PES is heavily populated in the vicinities of the corresponding global minimum with multiple structures contributing to the experimental properties. The last two statements, in conjunction with results from other works (see for example Phys. Chem. Chem. Phys. 2014, 16, 19241) place a warning on the generalized and naive practice of assigning experimental observations to individual structures.
机译:使用密度泛函理论方法探索与硝酸根阴离子的微溶剂化有关的各种微溶剂化物种的势能面(PES),发现了[NO3(H2O)(n)]科学文献中以前没有注意到的丰富而复杂的结构多样性。 (-),n = 1-6个群集。在稳定簇中有两种类型的相互作用:传统的水与水以及电荷辅助的硝酸盐与水的氢键(HBs)。硝酸盐中氧原子上的形式负电荷加强了水分子之间的氢键。在可用的实验数据(顺序水合焓,IR光谱和垂直脱离能)与从我们的结构获得的相应期望值之间存在着显着的一致性。每个PES都位于相应全局最小值附近,且具有有助于实验性质的多个结构。最后两个陈述,结合其他工作的结果(例如,参见Phys。Chem。Chem。Phys。2014,16,19241),对将实验观察值分配给单个结构的普遍性和幼稚的做法提出了警告。

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