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首页> 外文期刊>The Journal of Chemical Physics >Communication: Hilbert-space partitioning of the molecular one-electron density matrix with orthogonal projectors
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Communication: Hilbert-space partitioning of the molecular one-electron density matrix with orthogonal projectors

机译:交流:使用正交投影仪对分子单电子密度矩阵进行希尔伯特空间划分

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摘要

A double-atom partitioning of the molecular one-electron density matrix is used to describe atoms and bonds. All calculations are performed in Hilbert space. The concept of atomic weight functions (familiar from Hirshfeld analysis of the electron density) is extended to atomic weight matrices. These are constructed to be orthogonal projection operators on atomic subspaces, which has significant advantages in the interpretation of the bond contributions. In close analogy to the iterative Hirshfeld procedure, self-consistency is built in at the level of atomic charges and occupancies. The method is applied to a test set of about 67 molecules, representing various types of chemical binding. A close correlation is observed between the atomic charges and the Hirshfeld-I atomic charges.
机译:分子单电子密度矩阵的双原子划分用于描述原子和键。所有计算都在希尔伯特空间中进行。原子量函数的概念(对电子密度的Hirshfeld分析是熟悉的)扩展到原子量矩阵。这些被构造为原子子空间上的正交投影算子,在解释键的贡献方面具有显着的优势。与Hirshfeld迭代过程非常相似,自洽建立在原子电荷和占有率的层次上。该方法应用于代表各种化学结合类型的约67个分子的测试集。在原子电荷和Hirshfeld-I原子电荷之间观察到紧密的相关性。

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