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Calculation of Electronic Coupling Matrix Elements for Ground and Excited State Electron Transfer Reactions: Comparison of the Generalized Mulliken–Hush and Block Diagonalization Methods

机译:用于激发态和电子激发态的电子耦合矩阵元素的计算:广义mulliken-Hush和块对角化方法的比较

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摘要

Two independent methods are presented for the nonperturbative calculation of the electronic coupling matrix element (Hab) for electron transfer reactions using ab initio electronic structure theory. The first is based on the generalized Mulliken–Hush (GMH) model, a multistate generalization of the Mulliken Hush formalism for the electronic coupling. The second is based on the block diagonalization (BD) approach of Cederbaum, Domcke, and co-workers. Detailed quantitative comparisons of the two methods are carried out based on results for (a) several states of the system Zn2OH2+ and (b) the low-lying states of the benzene–Cl atom complex and its contact ion pair. Generally good agreement between the two methods is obtained over a range of geometries. Either method can be applied at an arbitrary nuclear geometry and, as a result, may be used to test the validity of the Condon approximation. Examples of nonmonotonic behavior of the electronic coupling as a function of nuclear coordinates are observed for Zn2OH2+. Both methods also yield a natural definition of the effective distance (rDA) between donor (D) and acceptor (A) sites, in contrast to earlier approaches which required independent estimates of rDA, generally based on molecular structure data.
机译:提出了两种独立的方法,使用从头算电子结构理论,对电子转移反应的电子耦合矩阵元素(Hab)进行无扰动计算。第一种基于广义Mulliken-Hush(GMH)模型,该模型是电子耦合的Mulliken Hush形式主义的多状态概括。第二种方法是基于Cederbaum,Domcke和同事的块对角化(BD)方法。基于以下结果对两种方法进行了详细的定量比较:(a)Zn2OH2 +体系的几种状态,(b)苯-Cl原子络合物及其接触离子对的低态。通常,在一定的几何形状范围内,两种方法之间具有良好的一致性。两种方法都可以应用于任意核几何形状,因此可以用于测试Condon逼近的有效性。对于Zn 2 OH 2+,观察到电子耦合的非单调行为作为核坐标的函数的例子。与较早的方法(通常基于分子结构数据需要独立估计rDA的方法)相比,这两种方法也都能得出供体(D)和受体(A)位点之间有效距离(rDA)的自然定义。

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