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Effects of Water Molecules on Metal Complexes of Hydroxyoxime and Carboxylic Acid Extractants

机译:水分子对羟肟和羧酸萃取物金属络合物的影响

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Water molecules around the cobalt(II) (Co) and manganese(II) (Mn) complexes of the hydroxyoxime extractant, LIX63 and/or of the carboxylic acid extractant, Versatic acid 10 (VA10), in cyclohexane solvent were investigated using molecular dynamics calculations with simulated annealing. For the complexes of VA10, water molecules were coordinated to the metal ions, and VA10 molecules were found around the complexes. For the complexes of LIX63, a few water molecules were located at similar to 0.4 nm from the metal ions, in addition to the LIX63 molecules were also coordinated to the metal ions. Our trajectory analysis indicates that the water molecules at similar to 0.4 nm are hydrogen-bonded to LIX63 or other water molecules, suggesting that the hydrogen bonding contributes to the stabilization of the metal complex.
机译:在环己烷溶剂中,通过模拟退火的分子动力学计算,研究了羟基肟萃取剂LIX63和/或羧酸萃取剂叔碳酸10(VA10)的钴(II)(Co)和锰(II)(Mn)络合物周围的水分子。对于VA10配合物,水分子与金属离子配位,在配合物周围发现VA10分子。对于LIX63配合物,除了LIX63分子也与金属离子配位外,还有一些水分子位于距离金属离子约0.4nm的位置。我们的轨迹分析表明,类似于0.4nm的水分子与LIX63或其他水分子形成氢键,表明氢键有助于金属络合物的稳定。

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