Area of research
Biomedical Engineering · Computational Mechanics
Research interest
Research interests include Materials science, Chemistry, Biomass (ecology), Molten salt, Carbon fibers, and Chemical engineering.
Innovative molten salt techniques for biomass valorization: Transforming biomass into advanced carbon materials
Plasma Chemical Looping: Unlocking High-Efficiency CO<sub>2</sub> Conversion to Clean CO at Mild Temperatures
Modulating Electron Transfer between Pt and MOF Support through Pd Doping Promotes Nanozyme Catalytic Efficiency
A study of the interaction between volatile and char on the mechanism of NO and N2O conversion during nitrogen-containing biomass model (amino acids) combustion
Effect of Volatile-Char Interaction on Biochar Containing N/O-Functional Group During Reburning Denitrification
Insights into the electronic structure coupling effect of dual-metal atomic electrocatalytic platform for efficient clean energy conversion
A simple and recyclable molten-salt route to prepare superthin biocarbon sheets based on the high water-absorbent agaric for efficient lithium storage
Maduramicin induces cardiac muscle cell death by the ROS‐dependent PTEN/Akt–Erk1/2 signaling pathway
Eulerian LES simulation of coal jet flame with a simplified DQMOM model
Mitigation of 3-Monochloro-1,2-propanediol Ester Formation by Radical Scavengers
Anti-recombination organic dyes containing dendritic triphenylamine moieties for high open-circuit voltage of DSSCs
Impact of hydroxy and octyloxy substituents of phenothiazine based dyes on the photovoltaic performance
Influence of spatial arrangements of π-spacer and acceptor of phenothiazine based dyes on the performance of dye-sensitized solar cells