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Solid-state molecular oxygen activation using ball milling and a piezoelectric material for aerobic oxidation of thiols†
Gefei Wang,Jiajia Jia,Yu He,Diandian Wei,Mingyu Song,Lei Zhang,Ganzhong Li,Heng Li,Bingxin Yuan
RSC Advances Pub Date : 06/22/2022 00:00:00 , DOI:10.1039/D2RA02255A
Abstract

The agitation of BaTiO3 via ball milling converts mechanical energy into electrical energy, leading to the reduction of molecular oxygen via a single electron transfer pathway analogous to the photocatalytic reaction. This mechanoredox strategy for the oxidative coupling of thiols could eliminate waste and develop a recyclable methodology to accomplish organic transformations in a greener fashion, exhibiting promising potential for large-scale chemical manufacturing.

Graphical abstract: Solid-state molecular oxygen activation using ball milling and a piezoelectric material for aerobic oxidation of thiols
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