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Heterotrimetallic Mixed-Valent Molecular Precursors Containing Periodic Table Neighbors: Assignment of Metal Positions and Oxidation States

  • Haixiang Han
  • , Jesse C. Carozza
  • , Audra P. Colliton
  • , Yuxuan Zhang
  • , Zheng Wei
  • , Alexander S. Filatov
  • , Yu Sheng Chen
  • , Melisa Alkan
  • , Andrey Yu Rogachev
  • , Evgeny V. Dikarev
  • SUNY Albany
  • Cornell University
  • The University of Chicago
  • Illinois Institute of Technology

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

A known trinuclear structure was used to design the heterobimetallic mixed-valent, mixed-ligand molecule [CoII(hfac)3−Na−CoIII(acac)3] (1). This was used as a template structure to develop heterotrimetallic molecules [CoII(hfac)3−Na−FeIII(acac)3] (2) and [NiII(hfac)3−Na−CoIII(acac)3] (3) via isovalent site-specific substitution at either of the cobalt positions. Diffraction methods, synchrotron resonant diffraction, and multiple-wavelength anomalous diffraction were applied beyond simple structural investigation to provide an unambiguous assignment of the positions and oxidation states for the periodic table neighbors in the heterometallic assemblies. Molecules of 2 and 3 are true heterotrimetallic rather than a statistical mixture of two heterobimetallic counterparts. Trinuclear platform 1 exhibits flexibility in accommodating a variety of di- and trivalent metals, which can be further utilized in the design of molecular precursors for the NaMM′O4 functional oxide materials.

Original languageEnglish
Pages (from-to)9624-9630
Number of pages7
JournalAngewandte Chemie - International Edition
Volume59
Issue number24
DOIs
StatePublished - Jun 8 2020

Keywords

  • X-ray diffraction
  • crystal engineering
  • heterometallic compounds
  • molecular precursors
  • transition metals

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