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Nano Iron Nickel Cobalt Alloy Powder Used in Catalysis

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Nano Iron Nickel Cobalt Alloy Powder Used in Catalysis

Long-term stable supply of all kinds of binary and ternary alloys by Hongwu Nano. Hongwu Nano also can provide customized services, the ratio and particle size of alloy powders can be adjusted. Nano FeNiCo alloy powder is available for ≤100nm, Fe55Ni28Co17.

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Nano Iron Nickel Cobalt Alloy Powder Used in Catalysis


Iron nickel cobalt alloy nanoparticles have wide applications as catalysts. Their special structure and composition endow them with excellent catalytic activity and selectivity, allowing them to exhibit excellent performance in a variety of chemical reactions. The following are some applications of FeNiCo alloy nanopowders in the field of catalysis:
1. Hydrogenation reaction catalyst: Nano iron nickel cobalt alloy particle shows good catalytic activity and selectivity in hydrogenation reaction.
2. Wastewater treatment catalyst: Iron nickel cobalt alloy nano powders can be used to catalytically oxidize organic pollutants in wastewater. By catalyzing oxidation reactions, they can effectively convert organic pollutants into harmless products, promoting wastewater treatment and environmental protection.
3. CO2 conversion catalyst: FeNiCo alloy nanoparticle can also be used as a catalytic converter for CO2, converting CO2 into high value-added chemicals such as formic acid, methanol and acetic acid. This helps reduce greenhouse gas emissions and achieve resource utilization of CO2.
4. Oxygen reduction reaction (ORR) catalyst: Oxygen reduction reaction is a key reaction in energy conversion devices such as fuel cells and metal-air batteries. The nano iron nickel cobalt(Fe-Ni-Co) alloy catalyst can effectively catalyze the oxygen reduction reaction and improve the efficiency and performance stability of the battery.
5. Organic synthesis catalyst: Iron nickel cobalt(Fe-Ni-Co) alloy nano material has wide applications in the field of organic synthesis. They can be used to catalyze a variety of organic synthesis reactions such as hydrogenation, coupling reactions, carbonylation reactions and alkylation reactions, providing efficient, selective and environmentally friendly catalysts.

Remarks: The above information is for reference only. For further details, they're subject to actual applications and tests.
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