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顺铂衍生物的核磁共振偶合常数通过分子动力学和相对论 DFT 研究。

NMR J-coupling constants in cisplatin derivatives studied by molecular dynamics and relativistic DFT.

机构信息

Department of Chemistry, University at Buffalo, State University of New York, Buffalo, NY 14260-3000, USA.

出版信息

Chemphyschem. 2011 Jun 6;12(8):1448-55. doi: 10.1002/cphc.201000997. Epub 2011 Mar 4.

Abstract

Solvent effects on J((195)Pt-(15)N) one-bond nuclear spin-spin coupling constants (J(PtN)) of cisplatin [cis-diamminedichloroplatinum(II)] and three cisplatin derivatives are investigated using a combination of density functional theory (DFT) based ab initio molecular dynamics (aiMD) and all-electron relativistic DFT NMR calculations employing the two-component relativistic zeroth-order regular approximation (ZORA). Good agreement with experiment is obtained when explicit solvent molecules are considered and when the computations are performed with a hybrid functional. Spin-orbit coupling causes only small effects on J(PtN) . Key factors contributing to the magnitude of coupling constants are elucidated, with the most significant being the presence of solvent as well as the quality of the density functional and basis set combination. The solvent effects are of the same magnitude as J(PtN) calculated for gas-phase geometries. However, the trends of J(PtN) among the complexes are already present in the gas phase. Results obtained with a continuum solvent model agree quite well with the aiMD results, provided that the Pt solvent-accessible radius is carefully chosen. The aiMD results support the existence of a partial hydrogen-bond-like inverse-hydration-type interaction affording a weak (1)J(Pt⋅⋅⋅H(w)) coupling between the complexes and the coordinating water molecule.

摘要

使用基于密度泛函理论(DFT)的从头算分子动力学(aiMD)和全电子相对论 DFT NMR 计算相结合,研究了溶剂对顺铂[顺式-二氨二氯铂(II)]和三种顺铂衍生物的 J((195)Pt-(15)N) 单键核自旋-自旋耦合常数(J(PtN))的影响。当考虑到显式溶剂分子并使用混合泛函进行计算时,与实验结果吻合良好。自旋轨道耦合对 J(PtN) 的影响很小。阐明了影响耦合常数大小的关键因素,其中最重要的是溶剂的存在以及密度泛函和基组组合的质量。溶剂效应与气相几何形状计算的 J(PtN) 具有相同的大小。然而,在气相中已经存在复合物之间 J(PtN) 的趋势。如果仔细选择 Pt 溶剂可及半径,则连续溶剂模型获得的结果与 aiMD 结果非常吻合。aiMD 结果支持存在部分氢键类似的反水合型相互作用,从而在复合物和配位水分子之间提供弱的 (1)J(Pt⋅⋅⋅H(w)) 耦合。

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