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Natural population analysis

Alan E. Reed; Robert B. Weinstock; Frank Weinhold · The Journal of Chemical Physics · 1985

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A method of ‘‘natural population analysis’’ has been developed to calculate atomic charges and orbital populations of molecular wave functions in general atomic orbital basis sets. The natural analysis is an alternative to conventional Mulliken population analysis, and seems to exhibit improved numerical stability and to better describe the electron distribution in compounds of high ionic character, such as those containing metal atoms. We calculated ab initio SCF-MO wave functions for compounds of type CH3X and LiX (X=F, OH, NH2, CH3, BH2, BeH, Li, H) in a variety of basis sets to illustrate the generality of the method, and to compare the natural populations with results of Mulliken analysis, density integration, and empirical measures of ionic character. Natural populations are found to give a satisfactory description of these molecules, providing a unified treatment of covalent and extreme ionic limits at modest computational cost.

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APA 7

Reed, A. E, Weinstock, R. B, & Weinhold, F. (1985). Natural population analysis. https://doi.org/10.1063/1.449486

MLA

Reed, Alan E, et al. "Natural population analysis." 1985. https://doi.org/10.1063/1.449486.

Chicago

Reed, Alan E, Robert B. Weinstock, and Frank Weinhold. 1985. "Natural population analysis.". https://doi.org/10.1063/1.449486.

Harvard

Reed, A. E, Weinstock, R. B. and Weinhold, F. 1985, Natural population analysis, The Journal of Chemical Physics, available at: https://doi.org/10.1063/1.449486 [Accessed 7 Aug. 2026].

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Title
Natural population analysis
Author / contributors
Alan E. Reed; Robert B. Weinstock; Frank Weinhold
Publisher
The Journal of Chemical Physics
Publication year
1985
Language
English

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