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The nature of a hybrid catalyst can be changed with additional characters.
The nature of a hybrid catalyst can be changed with additional characteristics.
Herein, we synthesized tungsten disulfide (WS2)/cobalt diselenide (CoSe2) hybrid catalyst for hydrogen evolution reaction (HER).
This hybrid catalyst system is of great potential for application in proton exchange membrane fuel cell.
The main product was ethane in the case of MFI hybrid catalyst and C3 or C4 hydrocarbon in the case of SAPO hybrid catalyst.
The hybrid catalyst forms a liquid-solid biphasic system and exhibits high activity, convenient recovery, and reusability.
A hybrid catalyst, Pt/γ-Al2O3-ZrO2/SO2−4, was designed to enhance the hydrogen production yields.
The observation suggests that the hybrid catalyst has a potential to be used in biomass conversion to levulinic acid.
The prepared TiO2/diatomite hybrid catalyst has shown relatively even porous structure and dispersion of TiO2 over the surface.
We elected the better synthesis order and optimized the best proportion of WO3 and C in the hybrid catalyst.
In this work, we present an optimized procedure producing a highly stable bifunctional hybrid catalyst with excellent ORR/OER activities.
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