Literature DB >> 30362733

Modeling the Oxygen Vacancy at a Molecular Vanadium(III) Silica-Supported Catalyst.

Teng Zhang1, Albert Solé-Daura2, Sarah Hostachy1, Sébastien Blanchard1, Céline Paris3, Yanling Li1, Jorge J Carbó2, Josep M Poblet2, Anna Proust1, Geoffroy Guillemot1.   

Abstract

Here we report on the use of a silanol-decorated polyoxotungstate, [SbW9O33( tBuSiOH)3]3- (1), as a molecular support to describe the coordination of a vanadium atom at a single-site on silica surfaces. By reacting [V(Mes)3·thf] (Mes = 2,4,6-trimethylphenyl) with 1 in tetrahydrofuran, the vanadium(III) derivative [SbW9O33( tBuSiO)3V(thf)]3- (2) was obtained. Compound 2 displays the paramagnetic behavior expected for a d2-VIII high spin complex (SQUID measurements) with a triplet electronic ground state (ca. 30 kcal·mol-1 more stable than the singlet, from DFT calculations). Compound 2 proves to be a reliable model for reduced isolated-vanadium atom dispersed on silica surfaces [(≡Si-O)3VIII(OH2)], an intermediate that is often proposed in a Mars-van Krevelen type mechanism for partial oxidation of light alcohols. Oxidation of 2 under air produced the oxo-derivative [SbW9O33( tBuSiO)3VO]3- (3). In compound 2, the d2-electrons are localized in degenerated d(V) orbitals, whereas in the electronically analogous bireduced-[SbW9O33( tBuSiO)3VO]5-, 3·(2e), one electron is localized on d(V) orbital and the second one is delocalized on the polyoxotungstic framework, leading to a unique case of a bireduced heteropolyanion derivative with completely decoupled d1-V(IV) and d1-W(V). Our body of experimental results (EPR, magnetic measurements, spectroelectrochemical studies, Raman spectroscopy) and theoretical studies highlights (i) the role of the apical ligand coordination, i.e., thf (σ-donor) vs oxo (π-donor), in destabilizing or stabilizing the d(V) orbitals relative to the d(W) orbitals, and (ii) a geometrical distortion of the O3VO entity that causes a splitting of the degenerated orbitals and the stabilization of one d(V) orbital in the bireduced compound 3·(2e).

Entities:  

Year:  2018        PMID: 30362733     DOI: 10.1021/jacs.8b09048

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  3 in total

1.  Oxygen atom transfer with organofunctionalized polyoxovanadium clusters: O-atom vacancy formation with tertiary phosphanes and deoxygenation of styrene oxide.

Authors:  Brittney E Petel; Rachel L Meyer; William W Brennessel; Ellen M Matson
Journal:  Chem Sci       Date:  2019-07-15       Impact factor: 9.825

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

Authors:  Simon Greiner; Jan Hettig; Alec Laws; Katharina Baumgärtner; Jenna Bustos; Ann-Christin Pöppler; Adam H Clark; May Nyman; Carsten Streb; Montaha Anjass
Journal:  Angew Chem Int Ed Engl       Date:  2022-01-17       Impact factor: 16.823

3.  When Identification of the Reduction Sites in Mixed Molybdenum/Tungsten Keggin-Type Polyoxometalate Hybrids Turns Out Tricky.

Authors:  Maxime Laurans; Michele Mattera; Raphaël Salles; Ludivine K'Bidi; Pierre Gouzerh; Séverine Renaudineau; Florence Volatron; Geoffroy Guillemot; Sébastien Blanchard; Guillaume Izzet; Albert Solé-Daura; Josep M Poblet; Anna Proust
Journal:  Inorg Chem       Date:  2022-05-12       Impact factor: 5.436

  3 in total

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