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Replacement of Volatile Acetic Acid by Solid SiO2@COOH Silica (Nano)Beads for (Ep)Oxidation Using Mn and Fe Complexes Containing BPMEN Ligand.


ABSTRACT: Mn and Fe BPMEN complexes showed excellent reactivity in catalytic oxidation with an excess of co-reagent (CH3COOH). In the straight line of a cleaner catalytic system, volatile acetic acid was replaced by SiO2 (nano)particles with two different sizes to which pending carboxylic functions were added (SiO2@COOH). The SiO2@COOH beads were obtained by the functionalization of SiO2 with pending nitrile functions (SiO2@CN) followed by CN hydrolysis. All complexes and silica beads were characterized by NMR, infrared, DLS, TEM, X-ray diffraction. The replacement of CH3COOH by SiO2@COOH (100 times less on molar ratio) has been evaluated for (ep)oxidation on several substrates (cyclooctene, cyclohexene, cyclohexanol) and discussed in terms of activity and green metrics.

SUBMITTER: Wang Y 

PROVIDER: S-EPMC8470966 | biostudies-literature | 2021 Sep

REPOSITORIES: biostudies-literature

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Replacement of Volatile Acetic Acid by Solid SiO<sub>2</sub>@COOH Silica (Nano)Beads for (Ep)Oxidation Using Mn and Fe Complexes Containing BPMEN Ligand.

Wang Yun Y   Gayet Florence F   Daran Jean-Claude JC   Guillo Pascal P   Agustin Dominique D  

Molecules (Basel, Switzerland) 20210907 18


Mn and Fe BPMEN complexes showed excellent reactivity in catalytic oxidation with an excess of co-reagent (CH<sub>3</sub>COOH). In the straight line of a cleaner catalytic system, volatile acetic acid was replaced by <b>SiO<sub>2</sub></b> (nano)particles with two different sizes to which pending carboxylic functions were added (<b>SiO<sub>2</sub>@COOH</b>). The <b>SiO<sub>2</sub>@COOH</b> beads were obtained by the functionalization of SiO<sub>2</sub> with pending nitrile functions (<b>SiO<sub>  ...[more]

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