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水溶液中银离子难以捉摸的配位:线性结构的证据

Elusive Coordination of the Ag Ion in Aqueous Solution: Evidence for a Linear Structure.

作者信息

Busato Matteo, Melchior Andrea, Migliorati Valentina, Colella Andrea, Persson Ingmar, Mancini Giordano, Veclani Daniele, D'Angelo Paola

机构信息

Dipartimento Politecnico di Ingegneria e Architettura (DPIA), Laboratori di Chimica, Università di Udine, via delle Scienze 99, 33100 Udine, Italy.

Dipartimento di Chimica, Università di Roma "La Sapienza", P.le A. Moro 5, 00185 Roma, Italy.

出版信息

Inorg Chem. 2020 Dec 7;59(23):17291-17302. doi: 10.1021/acs.inorgchem.0c02494. Epub 2020 Nov 24.

Abstract

X-ray absorption spectroscopy (XAS) has been employed to study the coordination of the Ag ion in aqueous solution. The conjunction of extended X-ray absorption fine structure (EXAFS) and X-ray absorption near-edge structure (XANES) data analysis provided results suggesting the preference for a first shell linear coordination with a mean Ag-O bond distance of 2.34(2) Å, different from the first generally accepted tetrahedral model with a longer mean Ag-O bond distance. molecular dynamics simulations with the Car-Parrinello approach (CPMD) were also performed and were able to describe the coordination of the hydrated Ag ion in aqueous solution in very good agreement with the experimental data. The high sensitivity for the closest environment of the photoabsorber of the EXAFS and XANES techniques, together with the long-range information provided by CPMD and large-angle X-ray scattering (LAXS), allowed us to reconstruct the three-dimensional model of the coordination geometry around the Ag ion in aqueous solution. The obtained results from experiments and theoretical simulations provided a complex picture with a certain amount of water molecules with high configurational disorder at distances comprised between the first and second hydration spheres. This evidence may have caused the proliferation of the coordination numbers that have been proposed so far for Ag in water. Altogether these data show how the description of the hydration of the Ag ion in aqueous solution can be complex, differently from other metal species where hydration structures can be described by clusters with well-defined geometries. This diffuse hydration shell causes the Ag-O bond distance in the linear [Ag(HO)] ion to be ca. 0.2 Å longer than in isolated ions in solid state.

摘要

X射线吸收光谱法(XAS)已被用于研究水溶液中银离子的配位情况。扩展X射线吸收精细结构(EXAFS)和X射线吸收近边结构(XANES)数据分析相结合的结果表明,银离子优先形成第一配位层的线性配位,平均Ag-O键长为2.34(2) Å,这与普遍接受的第一个四面体模型不同,后者的平均Ag-O键长更长。还采用了Car-Parrinello方法(CPMD)进行分子动力学模拟,所得结果能够很好地描述水溶液中水合银离子的配位情况,与实验数据相符。EXAFS和XANES技术对光吸收体最邻近环境具有高灵敏度,再加上CPMD和大角度X射线散射(LAXS)提供的长程信息,使我们能够重建水溶液中银离子周围配位几何结构的三维模型。实验和理论模拟得到的结果呈现出一幅复杂的图景,在第一和第二水合球之间的距离处,有一定数量的水分子具有高度的构型无序。这一证据可能导致了目前为止针对水中银提出的配位数的增加。总之,这些数据表明,与其他金属物种不同,水溶液中银离子水合作用的描述可能很复杂,其他金属物种的水合结构可以用具有明确几何形状的簇来描述。这种扩散的水合壳使得线性[Ag(HO)]离子中的Ag-O键长比固态孤立离子中的键长约长0.2 Å。

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