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"Developing paradigms of chemical bonding: adaptive natural density partitioning.

"Developing paradigms of chemical bonding: adaptive natural density partitioning. Research Abstract Details 

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  • "Developing paradigms of chemical bonding: adaptive natural density partitioning. Abstract Text:

    A method of description of the chemical bonding combining the compactness and intuitive simplicity of Lewis theory with the flexibility and generality of canonical molecular orbital theory is presented, which is called adaptive natural density partitioning. The objects of chemical bonding in this method are n-center 2-electron bonds, where n goes from one (lone-pair) to the maximum number of atoms in the system (completely delocalized bonding). The algorithm is a generalization of the natural bonding orbital analysis and is based on the diagonalization of the blocks of the first-order density matrix in the basis of natural atomic orbitals. The results obtained by the application of the algorithm to the systems with non-classical bonding can be readily interpreted from the point of view of aromaticity/antiaromaticity concepts. The considered examples include Li(4) cluster and a family of planar boron clusters observed in molecular beams.

    "Developing paradigms of chemical bonding: adaptive natural density partitioning. Publishing Authors By Initials

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    PUBMED ID PMID:

    MEDLINE DATE:

    "Developing paradigms of chemical bonding: adaptive natural density partitioning. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: Physical chemistry chemical physics : PCCP

    VOLUME: 10

    Page Numbers: 5207-17

    Journal Abbreviation:

    ISSN: 1463-9076

    DAY: 3

    MONTH: 07

    YEAR: 2008

    "Developing paradigms of chemical bonding: adaptive natural density partitioning. Information

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    LANGUAGE: eng

    NlmUniqueID: 100888160

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    Grant and Affiliation Information for "Developing paradigms of chemical bonding: adaptive natural density partitioning.

    AFFILIATION: Department of Chemistry and Biochemistry, Utah State University, Logan, UT 84322-0300, United States of America.

    Country: England

    England Research PublicationEngland Research Publication

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    MEDLINETA: Phys Chem Chem Phys

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