Area of research
Building and Construction · Biomedical Engineering
Research interest
Research interests include Anaerobic digestion, Rifamycin, Fermentation, Bioproduction, and Raw material.
Investigation into the treatment and resource recovery of rifamycin mycelial dreg with thermal alkaline pretreatment-anaerobic digestion
Fe3C/CoFe2O4 nanoparticles wrapped in one-dimensional MIL-53(Fe)-derived carbon nanofibers as efficient dual-function oxygen catalysts
Stable CuO with variable valence states cooperated with active Co2+ as catalyst/co-catalyst for oxygen reduction/methanol oxidation reactions
In situ immobilization of copper oxide thin-layer on Zeolitic Imidazolate Framework-67-derived cobalt oxide@nitrogen-doped carbon with multi-level architecture and versatile active sites for enhancing oxygen evolution/reduction reactions
Ti3+-self-doped TiO2 with multiple crystal-phases anchored on acid-pickled ZIF-67-derived Co3O4@N-doped graphitized-carbon as a durable catalyst for oxygen reduction in alkaline and acid media
ZIF-67-derived Co<sub>3</sub>O<sub>4</sub>@carbon protected by oxygen-buffering CeO<sub>2</sub>as an efficient catalyst for boosting oxygen reduction/evolution reactions
ZIF-67-derived CoO (tetrahedral Co2+)@nitrogen-doped porous carbon protected by oxygen vacancies-enriched SnO2 as highly active catalyst for oxygen reduction and Pt co-catalyst for methanol oxidation
In Situ Crystallization of Active NiOOH/CoOOH Heterostructures with Hydroxide Ion Adsorption Sites on Velutipes-like CoSe/NiSe Nanorods as Catalysts for Oxygen Evolution and Cocatalysts for Methanol Oxidation
ZIF-8-derived carbon-thin-layer protected WC/W24O68 micro-sized rods with enriched oxygen vacancies as efficient Pt co-catalysts for methanol oxidation and oxygen reduction
Self-generated carbon nanotubes for protecting active sites on bifunctional Co/CoOx schottky junctions to promote oxygen reduction/evolution reactions via efficient valence transition
Biomass pectin-derived N, S-enriched carbon with hierarchical porous structure as a metal-free catalyst for enhancing bio-electricity generation