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SOMC grafting of vanadium oxytriisopropoxide (VO(O i Pr)3) on dehydroxylated silica; analysis of surface complexes and thermal restructuring mechanism.


ABSTRACT: Vanadium oxytriisopropoxide (VO(O i Pr)3), 1, was grafted on highly dehydroxylated silica (SiO2-700: aerosil silica treated at 700 °C under high vacuum) to generate compound 2 following the concepts and methodology of surface organometallic chemistry (SOMC). The resulting compound was analyzed by elemental analysis, FT-IR, 1H, 13C and 51V solid state (SS) NMR, Raman and EPR spectroscopies. The grafting reaction of 1 to generate 2 was found to lead to the formation of a monopodal surface complex [([triple bond, length as m-dash]Si-O-)V(O)(O i Pr)2], 2m, as well as bipodal [([triple bond, length as m-dash]Si-O-)2V(O)(O i Pr)], 2b, formed along with ([triple bond, length as m-dash]Si-O- i Pr) moieties as an effect of the classical rearrangement of 2m with strained siloxane bridges. Upon controlled thermal treatment at 200 °C under high vacuum, 2m and 2b were found to mainly rearrange to tetrahedral VO4 moieties [([triple bond, length as m-dash]Si-O-)3V(O)] (3) with formation of propylene whereas the ([triple bond, length as m-dash]Si-O- i Pr) groups were preserved. The mechanism of the thermal rearrangement of the isopropoxide groups was investigated by a DFT approach revealing the occurrence of a concerted γ-H-transfer and olefin elimination mechanism.

SUBMITTER: Hogerl MP 

PROVIDER: S-EPMC9080862 | biostudies-literature | 2018 Jun

REPOSITORIES: biostudies-literature

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SOMC grafting of vanadium oxytriisopropoxide (VO(O <sup><i>i</i></sup> Pr)<sub>3</sub>) on dehydroxylated silica; analysis of surface complexes and thermal restructuring mechanism.

Högerl Manuel P MP   Serena Goh Li Min LM   Abou-Hamad Edy E   Barman Samir S   Dachwald Oliver O   Pasha Farhan Ahmad FA   Pelletier Jeremie J   Köhler Klaus K   D'Elia Valerio V   Cavallo Luigi L   Basset Jean-Marie JM  

RSC advances 20180606 37


Vanadium oxytriisopropoxide (VO(O <sup><i>i</i></sup> Pr)<sub>3</sub>), 1, was grafted on highly dehydroxylated silica (SiO<sub>2-700</sub>: aerosil silica treated at 700 °C under high vacuum) to generate compound 2 following the concepts and methodology of surface organometallic chemistry (SOMC). The resulting compound was analyzed by elemental analysis, FT-IR, <sup>1</sup>H, <sup>13</sup>C and <sup>51</sup>V solid state (SS) NMR, Raman and EPR spectroscopies. The grafting reaction of 1 to gene  ...[more]

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