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A Computational Framework for Magnetic Polyoxometalates and Molecular Spin Structures: CONDON 2.0

Journal

ISRAEL JOURNAL OF CHEMISTRY
Volume 51, Issue 2, Pages 215-227

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/ijch.201100013

Keywords

computational chemistry; molecular magnetism; polyoxometalates

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The emergence of increasingly complex molecular magnets, driven in particular by polyoxometalate chemistry, requires theoretical tools to accurately model and understand their magnetic phenomena. At the same time the unambiguous verification of model Hamiltonians remains a challenge, tied to factors ranging from available independent experimental data sets to available computation resources. Focusing on several recent examples for magnetically functionalized polyoxometalates and polynuclear coordination complexes, we demonstrate the recent developments of CONDON 2.0 that aim to address these issues, and suggest measurement protocols that will aid our multi-parameter computational approach.

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