Ternary layered carbide Mo2Ga2C composite flower-like MoS2 nano-particle composite material and preparation method and application thereof
A ternary layered and nano-particle technology, applied in chemical instruments and methods, chemical/physical processes, physical/chemical process catalysts, etc., to achieve the effects of simple operation, improved synergistic effect, and high purity
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Embodiment 1
[0039] Preparation of ternary layered carbide Mo 2 Ga 2 C composite flower-like MoS 2 Nanoparticle composites, specifically including:
[0040] (1) Weigh molybdenum powder and graphite according to the molar ratio of 2:1 (molybdenum powder 5.76g, graphite 0.36g), and ball mill for about 12 hours to make them fully mixed. The mixed powder was placed in a tube furnace, heated to 1000 °C at a rate of 8 °C per minute under an argon atmosphere, and kept at 1000 °C for 12 hours to obtain sintered bulk Mo 2 C;
[0041] (2) Take the above bulk Mo 2 4.08g of material C was ground into powder, mixed fully with 11.2g of liquid metal gallium at a molar ratio of 1:8, and then placed in a tube furnace. The tube furnace was evacuated and sealed, and the temperature was raised to 850 ℃ and kept for 48 hours, after natural cooling to obtain a light sintered material; take out the light sintered material, crush it with a mortar, put it back into the tube furnace, keep it at 850 ℃ for 24 ho...
Embodiment 2
[0049] The ternary layered carbide Mo of the present invention 2 Ga 2 C composite flower-like MoS 2 Performance testing of nanoparticle composites as cathode materials for electrolysis of hydrogen
[0050] The ternary layered carbide Mo prepared in above-mentioned embodiment 1 2 Ga 2 C composite flower-like MoS 2 Nanoparticle composite material, the base material ternary layered carbide Mo 2 Ga 2 C has a large specific surface area and good conductivity, and its composite material MoS 2 Nanoparticles have low overpotential and good catalytic activity. In the present invention, the ternary layered carbide Mo 2 Ga 2 C material is applied in the electrolysis hydrogen cathode material, through the composite nano-flower MoS 2 Nanoparticles act synergistically to enhance catalytic performance. The ternary layered carbide Mo of the present invention 2 Ga 2 C composite flower-like MoS 2 The performance test of the nanoparticle composite material as a cathode material for...
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