Redox‐Active Hybrid Polyoxometalate‐Stabilised Gold Nanoparticles
Impacto
Scholar |
Otros documentos de la autoría: Martin, Carmen; Kastner, Katharina; Cameron, Jamie; Hampson, Elizabeth; Alves Fernandes, Jesum; Gibson, Emma K.; Walsh, Darren; Sans, Victor; Newton, Graham
Metadatos
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comunitat-uji-handle3:10234/160293
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INVESTIGACIONMetadatos
Título
Redox‐Active Hybrid Polyoxometalate‐Stabilised Gold NanoparticlesAutoría
Fecha de publicación
2020-08-17Editor
WileyISSN
1433-7851; 1521-3773Cita bibliográfica
C. Martin, K. Kastner, J. M. Cameron, E. Hampson, J. Alves Fernandes, E. K. Gibson, D. A. Walsh, V. Sans, G. N. Newton, Angew. Chem. Int. Ed. 2020, 59, 14331.Tipo de documento
info:eu-repo/semantics/articleVersión de la editorial
https://onlinelibrary.wiley.com/doi/10.1002/anie.202005629Versión
info:eu-repo/semantics/publishedVersionPalabras clave / Materias
Resumen
We report the design and preparation of multifunctional hybrid nanomaterials through the stabilization of gold nanoparticles with thiol‐functionalised hybrid organic–inorganic polyoxometalates (POMs). The covalent ... [+]
We report the design and preparation of multifunctional hybrid nanomaterials through the stabilization of gold nanoparticles with thiol‐functionalised hybrid organic–inorganic polyoxometalates (POMs). The covalent attachment of the hybrid POM forms new nanocomposites that are stable at temperatures and pH values which destroy analogous electrostatically functionalised nanocomposites. Photoelectrochemical analysis revealed the unique photochemical and redox properties of these systems [-]
Publicado en
Angewandte Chemie (International Ed. in English), 2020, vol. 59, no 34Proyecto de investigación
Leverhulme Trust. Grant Number: RPG-2016-442; Diamond Light Source. Grant Number: SP15151; Generalitat Valenciana. Grant Number: CIDEGENT/2018/036; Engineering and Physical Sciences Research Council. Grant Number: EP/P002382/1Derechos de acceso
info:eu-repo/semantics/openAccess
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