Anna Proust mainly focuses on Polyoxometalate, Covalent bond, Inorganic chemistry, Photochemistry and Stereochemistry. The study incorporates disciplines such as Combinatorial chemistry, Nanoparticle, Nanotechnology and Molecule in addition to Polyoxometalate. The Covalent bond study combines topics in areas such as Nuclear magnetic resonance spectroscopy, Terpyridine and Chromophore.
Her research integrates issues of Crystallography, Electrochemistry, Catalysis and Silicon in her study of Inorganic chemistry. Her studies deal with areas such as Ruthenium, Visible spectrum, Redox, Intramolecular force and Iridium as well as Photochemistry. Anna Proust combines subjects such as Methanol, Medicinal chemistry, Crystal structure, Polymer chemistry and Metal with her study of Stereochemistry.
Anna Proust mainly investigates Polyoxometalate, Crystallography, Inorganic chemistry, Catalysis and Crystal structure. Her biological study spans a wide range of topics, including Covalent bond, Photochemistry, Supramolecular chemistry and Nanotechnology. Many of her studies involve connections with topics such as Surface modification and Nanotechnology.
Her Crystallography study combines topics in areas such as Nuclear magnetic resonance spectroscopy, Stereochemistry, Molecule and Ruthenium. She interconnects Tungsten, Nanoparticle, Raman spectroscopy, Reactivity and Metal in the investigation of issues within Inorganic chemistry. The concepts of her Crystal structure study are interwoven with issues in Magnetic susceptibility and Coordination complex.
Her primary scientific interests are in Polyoxometalate, Catalysis, Covalent bond, Polymer chemistry and Optoelectronics. Her Polyoxometalate research integrates issues from Supramolecular chemistry, Crystallography, Self-assembly, Photochemistry and Layer. Her Catalysis research includes themes of Tetrahydrofuran and Acetonitrile.
Her Covalent bond study incorporates themes from Nanoparticle, Nanotechnology, Electrochemistry and Surface modification. Her Surface modification research focuses on subjects like Oxide, which are linked to Molecular electronics. As a part of the same scientific study, Anna Proust usually deals with the Polymer chemistry, concentrating on Titanium and frequently concerns with Silanol and Alkene.
The scientist’s investigation covers issues in Polyoxometalate, Catalysis, Covalent bond, Polymer chemistry and Titanium. Her Polyoxometalate research is multidisciplinary, incorporating elements of Supramolecular chemistry, Crystallography and Self-assembly. Her work deals with themes such as Molecule, Molecular orbital, Monolayer and Electrochemistry, which intersect with Crystallography.
The Catalysis study combines topics in areas such as Derivative, Tetrahydrofuran and Vanadium. Her research in Covalent bond intersects with topics in BODIPY, Nanoparticle and Photochemistry, Chromophore. Her Nanoparticle study is concerned with Nanotechnology in general.
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Main-Group Element, Organic, and Organometallic Derivatives of Polyoxometalates.
Pierre Gouzerh;Anna Proust.
Chemical Reviews (1998)
Functionalization of polyoxometalates: towards advanced applications in catalysis and materials science
Anna Proust;René Thouvenot;Pierre Gouzerh.
Chemical Communications (2008)
Functionalization and post-functionalization: a step towards polyoxometalate-based materials
Anna Proust;Anna Proust;Benjamin Matt;Richard Villanneau;Geoffroy Guillemot.
Chemical Society Reviews (2012)
Cs9[(γ-PW10O36)2Ru4O5(OH)(H2O)4], a new all-inorganic, soluble catalyst for the efficient visible-light-driven oxidation of water
Claire Besson;Claire Besson;Zhuangqun Huang;Yurii V. Geletii;Sheri Lense.
Chemical Communications (2010)
Structural, Physicochemical, and Reactivity Properties of an All-Inorganic, Highly Active Tetraruthenium Homogeneous Catalyst for Water Oxidation
Yurii V. Geletii;Claire Besson;Yu Hou;Qiushi Yin.
Journal of the American Chemical Society (2009)
Phenylimido derivatives of [Mo6O19]2−: syntheses, X-ray structures, vibrational, electrochemical, 95Mo and 14N NMR studies
Anna Proust;René Thouvenot;Marc Chaussade;Francis Robert.
Inorganica Chimica Acta (1994)
New Perspectives in Polyoxometalate Chemistry by isolation of compounds containing very large moieties as transferable building blocks: (NMe4)5[As2Mo8V4AsO40] · 3H2O, (NH4)21[H3Mo57V6(NO)6O183(H2O)18] · 65 H2O, (NH2Me2)18(NH4)6[Mo57V6(NO)6O183(H2O)18] · 14 H2O, and (NH4)12[Mo36(NO)4O108(H2O)16] · 33 H2O
Achim Müller;Erich Krickemeyer;S Dillinger;Hartmut Bögge.
Zeitschrift für anorganische und allgemeine Chemie (1994)
Synthesis and characterization of the first carbene derivative of a polyoxometalate.
Vincent Artero;Anna Proust;Patrick Herson;Françoise Villain.
Journal of the American Chemical Society (2003)
Charge photo-accumulation and photocatalytic hydrogen evolution under visible light at an iridium(III)-photosensitized polyoxotungstate
Benjamin Matt;Jennifer Fize;Jamal Moussa;Hani Amouri.
Energy and Environmental Science (2013)
Merging Organometallic Chemistry with Polyoxometalate Chemistry
Pierre Gouzerh;Richard Villanneau;Renaud Delmont;Anna Proust.
Chemistry: A European Journal (2000)
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