The research aims to enhance selective methane hydroxylation using engineered interfaces and H2O2 generation.
Engineering interfaces to optimize electronic microenvironments.
Activation of methane under mild oxidation conditions.
In situ generation of H2O2 for controlled reactions.
Demonstrated effective methane activation using engineered interfaces.
Achieved selective and controllable oxidation of methane.
Establishes electronic microenvironment engineering as a viable strategy.
Resumen
in methane activation under mild conditions, and establishes electronic microenvironment engineering as a powerful strategy for the selective and controllable oxidation valorization of methane.