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二价镧系元素(Sm 和 Eu)的水合作用:用极化 AMOEBA 力场进行分子动力学研究。

Hydration of divalent lanthanides, Sm and Eu : A molecular dynamics study with polarizable AMOEBA force field.

机构信息

Department of Chemistry and Biochemistry, Florida State University, Tallahassee, Florida, USA.

Department of Biomedical Engineering, University of Texas at Austin, Austin, Texas, USA.

出版信息

J Comput Chem. 2022 Jul 15;43(19):1286-1297. doi: 10.1002/jcc.26933. Epub 2022 Jun 1.

Abstract

The chemistry of divalent lanthanides, Ln , is a growing sub-field of heavy element chemistry owing to new synthetic approaches. However, some theoretical aspects of these unusual cations are currently underdeveloped, especially as they relate to their dynamic properties in solution. In this work, we address the hydration of two of the classical Ln cations, Sm and Eu , using atomic multipole optimized energetic for biomolecular applications (AMOEBA) force fields. These cations have not been parameterized to date with AMOEBA, and few studies are available because of their instability with respect to oxidation in aqueous media. Coordination numbers (CN's) of 8.2 and 8.1 respectively for Sm and Eu , and 8.8 for both Sm and Eu have been obtained and are in good agreement with the few available AIMD and X-ray absorption fine structures studies. The decreased CN of Ln compared with Ln arises from progressive water exchange events that indicates the gradual stabilization of 8-coordinate structures with respect to 9-coordinate geometries. Moreover, the effects of the chloride counter anions on the coordination of Ln cations have been studied at different chloride concentrations in this work. Lastly, water exchange times of Ln cations have been calculated to provide a comprehensive understanding of the behavior of Eu and Sm in aqueous chloride media.

摘要

二价镧系元素(Ln)化学是重元素化学的一个不断发展的分支领域,这得益于新的合成方法。然而,这些不寻常阳离子的某些理论方面目前还不够发达,特别是它们在溶液中的动态特性。在这项工作中,我们使用针对生物分子应用的原子多极优化能量(AMOEBA)力场来研究两种典型的 Ln 阳离子,Sm 和 Eu 的水合作用。到目前为止,这些阳离子尚未用 AMOEBA 进行参数化,并且由于它们在水介质中易氧化,因此很少有研究。Sm 和 Eu 的配位数(CN)分别为 8.2 和 8.1,Sm 和 Eu 的 CN 均为 8.8,与少数可用的 AIMD 和 X 射线吸收精细结构研究结果吻合良好。与 Ln 相比,Ln 的 CN 降低是由于水交换事件的逐步发生,这表明 8 配位结构相对于 9 配位几何结构逐渐稳定。此外,本工作还研究了不同氯离子浓度下氯离子对 Ln 阳离子配位的影响。最后,计算了 Ln 阳离子的水交换时间,以全面了解 Eu 和 Sm 在水合氯化物介质中的行为。

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