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On the structure and thermodynamics of solvated monoatomic ions using a hybrid solvation model

机译:混合溶剂化模型研究溶剂化单原子离子的结构和热力学

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The hydration free energies relative to that of the proton are calculated for a representative set of monatomic ions Z~(+-). These include cationic forms of the alkali earth elements Li, Na, and K, and anionic forms of the halogens F, Cl, and Br. In the current model the relative ion hydration free energy is defined as #DELTA#[#DELTA#G_(hyd)(Z~(+-))] = G(Z~(+-)[H_2O]_n(aq) - G(H~+[H_2O]_n(aq) - G(Z~(+-)(gas))-G(H~+(gas)), where the solvated ions are represented by ion-water clusters coupled to a dielectric continuum using a self-consistent reaction field cycle. An investigation of the behavior of #DELTA#[#DELTA#G_(hyd)(Z~(+-))] as the number of explicit waters of hydration is increased reveals convergence by n = 4. This convergence indicates that the free energy change for the addition of water to a solvated proton-water complex is the same as the free energy change associated with the addition of water to a solvated Z~(+-)-water complex. This is true as long as there are four explicitly solvating waters associated with the ion. This convergence is independent of the type of monatomic ion studied and it occurs before the first hydration shell of the ions (typically >= 6) is satisfied. Structural analysis of the ion-water clusters reveals that the waters within the cluster are more likely to form hydrogen bonds with themselves when clustering around anions than when clustering around cations. This suggests that for small ion-water clusters, anions are more likely to be externally solvated than cations.
机译:对于代表性的单原子离子Z〜(+-),计算相对于质子的水合自由能。这些包括碱土金属元素Li,Na和K的阳离子形式,以及卤素F,Cl和Br的阴离子形式。在当前模型中,相对离子水合自由能定义为#DELTA#[#DELTA#G_(hyd)(Z〜(+-))] = G(Z〜(+-)[H_2O] _n(aq)- G(H〜+ [H_2O] _n(aq)-G(Z〜(+-)(gas))-G(H〜+(gas)),其中溶剂化的离子由与a耦合的离子水簇表示使用自洽反应场周期的介电连续体。随着水合显性水的数量增加,#DELTA#[#DELTA#G_(hyd)(Z〜(+-))]的行为研究表明n =4。该收敛表明,将水添加到溶剂化质子-水络合物中的自由能变化与将水添加到溶剂化Z〜(+-)-水络合物中相关的自由能变化相同。只要存在与离子相关的四个明显的溶剂化水,这是正确的,这种收敛与所研究的单原子离子的类型无关,并且发生在满足离子的第一个水合壳(通常> = 6)之前。离子水团簇的分析rs揭示,簇簇中的水在簇聚于阴离子周围时比在簇离阳离子时更容易与自身形成氢键。这表明对于小的离子水簇,阴离子比阳离子更可能在外部被溶剂化。

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