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October 9, 2025Physical Chemistry Chemical Physics3 citationsOpen Access

Multiconfigurational electronic structure calculations explain the role of ligands in g-tensor anisotropy for RuIII complexes

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PPPavel PokhilkoYPYulia Pushkar

Key Points

  • The study reveals that ligands significantly influence g-tensor anisotropy in RuIII complexes, enhancing theoretical understanding.
  • Key metrics show that accurate EPR parameter computation requires multiconfigurational electronic structure approaches for precise results.
  • An advanced method employing multiconfigurational electronic structure calculations was used to analyze the role of ligands in these complexes.
  • This approach may enable improved predictions and insights into the electronic properties of RuIII complexes, impacting related applications.

Abstract

Identification of radical intermediates by means of electron paramagnetic resonance benefits from the theoretical computation of the EPR parameters such as g-tensor and hyperfine splitting. In this work, we provide...

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Cite This Study

Pokhilko et al. (2025) studied this question.

synapsesocial.com/papers/68e70da790569dd607ee5c8ehttps://doi.org/10.1039/d5cp03298a
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