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A Fe-N/FeS@C composite prepared via mechanical activation and

$ 14.50

4.6 (66) In stock

Progress and Challenges of Carbon Dioxide Reduction Reaction on Transition Metal Based Electrocatalysts

Zhi Qun Tian's research works Guangxi University, Nanning and

A Fe-N/FeS@C composite prepared via mechanical activation and pyrolysis for sulfite activation to degrade organic contaminants: Single atomic irons anchored into carbon matrix with encapsulated FeS nanoparticles - ScienceDirect

Fe−N bonds induced highly efficient Fe3O4/g-C3N4 heterojunction for electrocatalytic hydrogen evolution - ScienceDirect

Fe3O4/ poly(caprolactone) (PCL) electrospun membranes as methylene

Efficient solid‐phase synthesis of acetylated lignin and a

Scheme 1. Schematic diagram of the synthesis of FeS nanoparticles

Efficient solid‐phase synthesis of acetylated lignin and a

Fe3+-sulfite complexation enhanced persulfate Fenton-like process

A Fe-N/FeS@C composite prepared via mechanical activation and pyrolysis for sulfite activation to degrade organic contaminants: Single atomic irons anchored into carbon matrix with encapsulated FeS nanoparticles - ScienceDirect

Construction of an interpenetrating manganese residue-derived FeC2O4/CuC2O4 composite with enhanced charge transfer in photo-Fenton reactions via mechanical activation pre-anchoring strategy - ScienceDirect

Recent trends on density functional theory–assisted calculations of structures and properties of metal–organic frameworks and metal–organic frameworks-derived nanocarbons, Journal of Materials Research

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A Fe-N/FeS@C composite prepared via mechanical activation and pyrolysis for sulfite activation to degrade organic contaminants: Single atomic irons anchored into carbon matrix with encapsulated FeS nanoparticles - ScienceDirect

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