首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Solvation and electronic spectrum of Ni2+ ion in aqueous and ammonia solutions: A sequential Monte Carlo/TD-DFT study
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Solvation and electronic spectrum of Ni2+ ion in aqueous and ammonia solutions: A sequential Monte Carlo/TD-DFT study

机译:Ni2 +离子在水溶液和氨溶液中的溶剂化和电子光谱:连续蒙特卡洛/ TD-DFT研究

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摘要

A sequential Monte Carlo/Quantum Mechanics approach was used to investigate the solvent effects on d -> d transition of the Ni2+ ion in aqueous and ammonia solutions. A set of Lennard-Jones parameters were generated by modification of the UFF Force Field. The structural results obtained for the liquid structure around the Ni2+ ion are in very good agreement with the experimental findings. The water molecules in the second coordination shell interact strongly with the first shell, with hydrogen bonds of -14.6 +/- 3.3 kcal mol(-1) which is 30% stronger than in the ammonia complex. The electronic spectrum was evaluated within the TD-DFT approach on the gas phase geometry and also on the Monte Carlo generated clusters, including the long range solvent effects by means of the PCM continuum model. We show that the computed electronic transitions are all red-shifted compared with the experimental results and, the agreement with the experimental values are only qualitative.
机译:顺序蒙特卡罗/量子力学方法用于研究溶剂对水溶液和氨溶液中Ni2 +离子的d-> d跃迁的影响。通过修改UFF力场生成了一组Lennard-Jones参数。 Ni 2+离子周围的液体结构获得的结构结果与实验结果非常吻合。第二个配位壳中的水分子与第一个壳强烈相互作用,氢键为-14.6 +/- 3.3 kcal mol(-1),比氨配合物中的氢键强30%。在TD-DFT方法中,通过PCM连续模型对气相几何形状以及蒙特卡洛生成的簇(包括远程溶剂效应)进行了电子光谱评估。我们表明,与实验结果相比,计算出的电子跃迁都发生了红移,并且与实验值的一致性只是定性的。

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