首页> 外文期刊>Journal of chemical theory and computation: JCTC >3D-RISM-MP2 Approach to Hydration Structure of Pt(II) and Pd(II) Complexes: Unusual H-Ahead Mode vs Usual O-Ahead One
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3D-RISM-MP2 Approach to Hydration Structure of Pt(II) and Pd(II) Complexes: Unusual H-Ahead Mode vs Usual O-Ahead One

机译:Pt(II)和Pd(II)配合物水合结构的3D-RISM-MP2方法:异常的H-ahead模式与通常的O-ahead模式

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Solvation of transition metal complexes with water has been one of the fundamental topics in physical and coordination chemistry. In particular, Pt(II) complexes have recently attracted considerable interest for their relation to anticancer activity in cisplatin and its analogues, yet the interaction of the water molecule and the metal center has been obscured. The challenge from a theoretical perspective remains that both the microscopic solvation effect and the dynamical electron correlation (DEC) effect have to be treated simultaneously in a-reasonable manner. In this work we derive the analytical gradient for the three-dimensional reference interaction site model Moller-Plesset second order (3D-RISM-MP2) free energy. On the basis of the three-regions 3D-RISM self-consistent field (SCF) method recently proposed by us, we apply a new layer of the Z-vector method to the CP-RISM equation as well as point-charge approximation to the derivatives with respect to the density matrix elements in the RISM-CPHF equation to remarkably reduce the computational cost. This method is applied to study the interaction of H2O with the d(8) square planar transition metal complexes in aqueous solution, trans[(PtCl2)-Cl-II(NH3)(glycine)] (1a), [Pt-II(NH3)(4)](2+) (1b), [Pt-II(CN)(4)](2-) (1c), and their Pd(II) analogues 2a, 2b, and 2c, respectively, to elucidate whether the usual H2O interaction through O atom (O-ahead mode) or unusual one through H atom (H-ahead mode) is stable in these complexes. We find that the interaction energy of the coordinating water and the, transition metal complex changes little when switching from gas to aqueous phase, but the solvation free energy differs remarkably between the two interaction modes, thereby affecting the relative stability of the H-ahead and O-ahead modes. Particularly, in contrast to the expectation that the O-ahead mode is preferred due to the presence of positive charges in 1b, the H-ahead mode is also found to be more stable. The O-ahead mode is found to be more stable than the H-ahead one only in 2b. The energy decomposition analysis (EDA) at the 3D-RISM-MP2 level revealed that the O-ahead mode is stabilized by the electrostatic (ES) interaction, whereas the H-ahead one is mainly stabilized by the DEC effect. The ES interaction is also responsible for the difference between the Pd(II) and Pt(11) complexes; because the electrostatic potential is more negative along the z-axis in the Pt(II) complex than in the Pd(II) one, the O-ahead mode prefers the Pd(II) complexes, whereas the H-ahead becomes predominant in the Pt(II) complexes.
机译:用水溶解过渡金属配合物已成为物理和配位化学的基本主题之一。特别是,Pt(II)络合物最近因其与顺铂及其类似物中的抗癌活性有关而引起了人们的极大兴趣,但水分子与金属中心之间的相互作用却被掩盖了。从理论角度来看,挑战仍然在于,必须同时以合理的方式同时处理微观溶剂化效应和动态电子相关(DEC)效应。在这项工作中,我们导出了三维参考相互作用位点模型Moller-Plesset二阶(3D-RISM-MP2)自由能的解析梯度。在我们最近提出的三区域3D-RISM自洽场(SCF)方法的基础上,我们将Z-vector方法的新层应用于CP-RISM方程,并将点电荷近似应用于对RISM-CPHF方程中的密度矩阵元素进行微分,以显着降低计算成本。该方法用于研究H2O与d(8)方形平面过渡金属配合物在水溶液中的相互作用,反式[(PtCl2)-Cl-II(NH3)(甘氨酸)](1a),[Pt-II( NH3)(4)](2+)(1b),[Pt-II(CN)(4)](2-)(1c)及其Pd(II)类似物2a,2b和2c分别阐明在这些配合物中通过O原子进行的常规H2O相互作用(O-提前模式)或通过H原子进行的异常H-Ahead模式(H-提前模式)是否稳定。我们发现配位水与过渡金属配合物的相互作用能在从气相转换为水相时变化不大,但两种相互作用模式之间的溶剂化自由能却显着不同,从而影响了H提前相和H提前相的相对稳定性。 O提前模式。特别地,与期望由于1b中存在正电荷而优选O-提前模式的期望相反,还发现H-提前模式更稳定。发现仅在2b中O提前模式比H提前模式更稳定。在3D-RISM-MP2水平上的能量分解分析(EDA)显示,通过静电(ES)相互作用可稳定O型超前模式,而通过DEC效应可稳定H型超前模式。 ES相互作用还造成Pd(II)和Pt(11)配合物之间的差异。由于Pt(II)配合物中的z轴静电势比Pd(II)中的静电势更负,因此O-ahead模式更倾向于Pd(II)络合物,而H-ahead模式在Pt(II)络合物中占主导地位。铂(II)配合物。

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