The Dawson tungstovanadate [P2W15V3O62](9-) can be grafted to secondary diolamides. The electron-withdrawing character of the polyanion increases the acidity of the amide proton, leading to an organo-polyoxometalate, which can be used as a BrOnsted organocatalyst. High-field NMR and DFT modeling indicate that the amide proton stays on the nitrogen and that the exalted acidity derives from the interaction between the organic and inorganic parts of the organo-polyoxometalate. The amide-inserted vanadotungstates thus form a new family of (hybrid) heteropolyacids, offering new perspectives for the application of POM-based catalysis in organic synthesis.

Grafting of Secondary Diolamides onto [P2W15V3O62]9- Generates Hybrid Heteropoly Acids / Lachkar, David; Vilona, Debora; Dumont, Elise; Lelli, Moreno; Lacôte, Emmanuel. - In: ANGEWANDTE CHEMIE. INTERNATIONAL EDITION. - ISSN 1433-7851. - STAMPA. - 55:(2016), pp. 5961-5965. [10.1002/anie.201510954]

Grafting of Secondary Diolamides onto [P2W15V3O62]9- Generates Hybrid Heteropoly Acids

LELLI, MORENO
Writing – Review & Editing
;
2016

Abstract

The Dawson tungstovanadate [P2W15V3O62](9-) can be grafted to secondary diolamides. The electron-withdrawing character of the polyanion increases the acidity of the amide proton, leading to an organo-polyoxometalate, which can be used as a BrOnsted organocatalyst. High-field NMR and DFT modeling indicate that the amide proton stays on the nitrogen and that the exalted acidity derives from the interaction between the organic and inorganic parts of the organo-polyoxometalate. The amide-inserted vanadotungstates thus form a new family of (hybrid) heteropolyacids, offering new perspectives for the application of POM-based catalysis in organic synthesis.
2016
55
5961
5965
Goal 7: Affordable and clean energy
Lachkar, David; Vilona, Debora; Dumont, Elise; Lelli, Moreno; Lacôte, Emmanuel
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1086231
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