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首页> 外文期刊>Theoretical chemistry accounts >Unimolecular and hydrolysis channels for the detachment of water from microsolvated alkaline earth dication (Mg~(2+), Ca~(2+), Sr~(2+), Ba~(2+)) clusters
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Unimolecular and hydrolysis channels for the detachment of water from microsolvated alkaline earth dication (Mg~(2+), Ca~(2+), Sr~(2+), Ba~(2+)) clusters

机译:从微溶剂化碱土金属指示剂(Mg〜(2 +),Ca〜(2 +),Sr〜(2 +),Ba〜(2+))簇中分离水的单分子和水解通道

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摘要

We examine theoretically the three channels that are associated with the detachment of a single water molecule from the aqueous clusters of the alkaline earth dications, [M(H2O)_n]~(2+), M = Mg, Ca, Sr, Ba, n ≤ 6. These are the unimolecular water loss (M~(2+)(H2O)_(n-1) + H2O) and the two hydrolysis channels resulting the loss of hydronium ([MOH(H2O)_(n-2)]~+ + H3O~+) and Zundel ([MOH(H2O)_(n-3)]+ + H3O+(H2O)) cations. Minimum energy paths (MEPs) corresponding to those three channels were constructed at the M0ller-Plesset second order perturbation (MP2) level of theory with basis sets of double-and triple-ζ, quality. We furthermore investigated the water and hydronium loss channels from the mono-hydroxide water clusters with up to four water molecules, [MOH (H2O)_n]~+, 1 ≤ n ≤ 4. Our results indicate the preference of the hydronium loss and possibly the Zundel-cation loss channels for the smallest size clusters, whereas the unimolecular water loss channel is preferred for the larger ones as well as the mono-hydroxide clusters. Although the charge separation (hydronium and Zundel-cation loss) channels produce more stable products when compared to the ones for the unimolecular water loss, they also require the surmounting of high-energy barriers, a fact that makes the experimental observation of fragments related to these hydrolysis channels difficult.
机译:我们从理论上研究了与单个水分子从碱土金属水簇中分离[M(H2O)_n]〜(2 +),M = Mg,Ca,Sr,Ba, n≤6。这是单分子水损失(M〜(2 +)(H2O)_(n-1)+ H2O)和两个水解通道导致水合氢的损失([MOH(H2O)_(n-2 )]〜+ + H3O〜+)和Zundel([MOH(H2O)_(n-3)] + + H3O +(H2O))阳离子。对应于这三个通道的最小能量路径(MEP)是在M0ller-Plesset二阶扰动(MP2)的理论水平上构建的,具有双重和三次ζ质量的基本集。此外,我们还研究了具有多达四个水分子[MOH(H2O)_n]〜+,1≤n≤4的一水合物水团的水和水合氢盐损失通道。对于最小尺寸的簇,Zundel阳离子损失通道,而对于较大的簇和单氢氧化物簇,则优选单分子水损失通道。尽管与单分子失水通道相比,电荷分离(氢和Zundel阳离子损失)通道产生的产物更稳定,但它们也需要克服高能垒,这一事实使得实验观察到的碎片与这些水解通道困难。

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