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A General Access Route to High-Nuclearity, Metal-Functionalized Molecular Vanadium Oxides.


ABSTRACT: Molecular metal oxides are key materials in diverse fields like energy storage and conversion, molecular magnetism and as model systems for solid-state metal oxides. To improve their performance and increase the variety of accessible motifs, new synthetic approaches are necessary. Herein, we report a universal, new precursor to access different metal-functionalized polyoxovanadate (POV) clusters. The precursor is synthesized by a novel solid-state thermal treatment procedure. Solution-phase test reactions at room temperature and pressure show that reaction of the precursor with various metal nitrate salts gives access to a range of metal-functionalized POVs. The first nitrate-templated molecular calcium vanadate cluster is reported. We show that this precursor could open new access routes to POV components for molecular magnetism, energy technologies or catalysis.

SUBMITTER: Greiner S 

PROVIDER: S-EPMC9302674 | biostudies-literature | 2022 Feb

REPOSITORIES: biostudies-literature

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A General Access Route to High-Nuclearity, Metal-Functionalized Molecular Vanadium Oxides.

Greiner Simon S   Hettig Jan J   Laws Alec A   Baumgärtner Katharina K   Bustos Jenna J   Pöppler Ann-Christin AC   Clark Adam H AH   Nyman May M   Streb Carsten C   Anjass Montaha M  

Angewandte Chemie (International ed. in English) 20220117 9


Molecular metal oxides are key materials in diverse fields like energy storage and conversion, molecular magnetism and as model systems for solid-state metal oxides. To improve their performance and increase the variety of accessible motifs, new synthetic approaches are necessary. Herein, we report a universal, new precursor to access different metal-functionalized polyoxovanadate (POV) clusters. The precursor is synthesized by a novel solid-state thermal treatment procedure. Solution-phase test  ...[more]

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