Area of research
Environmental Engineering · Insect Science
Research interest
Research interests include Chemistry, Daphnia magna, Pesticide, Toxicology, Rosmarinic acid, and Biochar.
Improved solubility and emulsifying properties of pea protein by microwave-Maillard reaction
Molecular mechanism by which luteolin inhibits toll-like receptor 4 activation: Multi-spectroscopic analysis and molecular simulation
Pickering emulsions stabilized by β-Lactoglobulin-Rosmarinic acid-Pectin nanoparticles: Influence of interfacial behavior and rheology performance
Covalent binding of β-Lactoglobulin and rosmarinic acid by alkaline and free-radical treatment: Improved thermal stability and antioxidant capability
Incorporation of N-doped biochar into zero-valent iron for efficient reductive degradation of neonicotinoids: mechanism and performance
Characterization of a novel recombinant D-mannose isomerase from Bifidobacterium bifidum and its catalytic mechanism
Inhibition of toll-like receptor 4 activation by apigenin and chrysin via competition for sites and conformational changes
Correction: Incorporation of N-doped biochar into zero-valent iron for efficient reductive degradation of neonicotinoids: mechanism and performance
Paddy-upland rotation with Chinese milk vetch incorporation reduced the global warming potential and greenhouse gas emissions intensity of double rice cropping system
Highly Crystallized Fe<sub>2</sub>P Embedded in N-Doped Carbon for Enhancing Long-Term Bioelectricity Generation by Lowering Cathode Poisoning in Microbial Fuel Cells
Selection of organosilicone surfactants for tank-mixed pesticides considering the balance between synergistic effects on pests and environmental risks
Alcohol ethoxylates significantly synergize pesticides than alkylphenol ethoxylates considering bioactivity against three pests and joint toxicity to Daphnia magna