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首页> 外文期刊>The Journal of Chemical Physics >The ion pairing and hydration structure of Ni2+ in supercritical water at 425 degrees C determined by x-ray absorption fine structure and molecular dynamics studies
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The ion pairing and hydration structure of Ni2+ in supercritical water at 425 degrees C determined by x-ray absorption fine structure and molecular dynamics studies

机译:X射线吸收精细结构和分子动力学研究确定425℃超临界水中Ni 2+的离子对和水合结构

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摘要

The ion pairing structure of Ni(Br)(2) solutions (0.2 and 0.4 molal) under supercritical conditions was determined using x-ray absorption fine structure (X4FS) spectroscopy. These first measurements of the average bulk structure show that approximately one Br-counterion is associated with each Ni2+. The Ni2+-to-Br- distance of 2.40 Angstrom is very accurately determined and the strength of this interaction, as indicated by the Debye-Waller factor (sigma(2) = 0.009 Angstrom(2)), shows that the bromine anion is very tightly bound to the nickel cation under these supercritical conditions. In addition to the onset of ion pairing interactions, there is also a dramatic transition in the hydration structure. Results show a loss of about 50% of the waters in the first shell upon going from ambient to a hydrothermal condition of 425 degrees C and 690 bar. Finally, we use molecular dynamics simulations with refined intermolecular potentials to directly calculate XAFS spectra that are shown to quantitatively reproduce the experimental results for the ion pair and hydration structure. (C) 1998 American Institute of Physics. [S0021-9606(98)52410-5]. [References: 50]
机译:使用X射线吸收精细结构(X4FS)光谱确定了Ni(Br)(2)溶液(0.2和0.4摩尔)在超临界条件下的离子配对结构。这些对平均本体结构的首次测量表明,每个Ni2 +与大约一个Br反离子缔合。 Ni2 +到Br-的距离为2.40埃,可以非常精确地确定,并且这种相互作用的强度(由Debye-Waller因子(sigma(2)= 0.009埃(2))表示)表明,溴阴离子非常在这些超临界条件下与镍阳离子紧密结合。除了离子配对相互作用的开始之外,水合结构中还存在戏剧性的转变。结果表明,当从环境温度变为425摄氏度和690巴的水热条件时,第一层外壳中的水损失约50%。最后,我们使用分子动力学模拟和精细的分子间电势来直接计算XAFS谱图,该谱图定量地再现了离子对和水合结构的实验结果。 (C)1998美国物理研究所。 [S0021-9606(98)52410-5]。 [参考:50]

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