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March 1, 2026The Journal of Physical Chemistry Letters0 citationsOpen Access

Periodic Hirshfeld Atom Refinement

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KCKanghyun ChuDJDylan JayatilakaLMLorraine A. Malaspina

Key Points

  • The aim is to introduce a new variant of periodic Hirshfeld Atom Refinement applicable to periodic-network structures.
  • Developed a variant of periodic Hirshfeld Atom Refinement (pHAR) using periodic-boundary conditions.
  • Utilized atom-centered Gaussian orbitals with a Bloch wave formalism.
  • Tested pHAR on single-crystal diffraction data from boranes and borates.
  • pHAR achieved close agreement of X-H bond lengths with neutron-diffraction reference data.
  • The method demonstrated improved precision in measuring B-H bonds.
  • Nearly doubled the reliable experimental structural data available for B-H bonds.

Abstract

Hirshfeld Atom Refinement (HAR) is a quantum crystallographic method for analyzing single-crystal X-ray diffraction data, providing accurate and precise structural parameters. Despite its success in predicting hydrogen-atom parameters, the application of HAR is fundamentally limited to molecular crystals. Inspired by two recently developed HAR versions that employ periodic-boundary conditions, here we introduce a new variant of periodic HAR (pHAR) that is applicable to any periodic-network structure while remaining compatible with conventional HAR by using atom-centered Gaussian orbitals with a Bloch wave formalism. pHAR was tested against high-quality single-crystal diffraction data for boranes and borates comprising N-H and B-H bonds in different chemical environments. The results demonstrate a close agreement of X-H bond lengths with reference data from neutron-diffraction experiments with improved precision. Using pHAR, this study has nearly doubled the previously available body of reliable experimental structural data on B-H bonds.

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Cite This Study

Chu et al. (2026) studied this question.

synapsesocial.com/papers/69a3d8e7ec16d51705d302c6https://doi.org/10.1021/acs.jpclett.5c03918
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