Functionalization via covalent grafting of organic functions allows to tune the redox and acid-base properties, and the solubility of polyoxometalates, to enhance their stability and biological activity and to reduce their toxicity, to facilitate their implementation in extended structures and functional devices. We discuss herein the electronic and binding connections, and the various synthesis methodologies. We emphasize on organonitrogen, organosilyl and organophosphonyl derivatives with special attention to synthesis, characterization and potential applications in catalysis and materials science. We also consider the giant molybdenum oxide-based clusters especially the porous capsule-type clusters (Keplerates) which have high relevance to this context. © The Royal Society of Chemistry.
Mendeley helps you to discover research relevant for your work.
CITATION STYLE
Proust, A., Thouvenot, R., & Gouzerh, P. (2008). Functionalization of polyoxometalates: Towards advanced applications in catalysis and materials science. Chemical Communications. Royal Society of Chemistry. https://doi.org/10.1039/b715502f