Area of research
Aerospace Engineering · Mechanical Engineering
Research interest
Research focused on Acetylcholinesterase and Bombyx mori, with related work in Immunoassay, Mycotoxin, Chromatography. Notable publications include 'Structural Insights into the Stability and Recognition Mechanism of the Antiquinalphos Nanobody for the Detection of Quinalphos in Foods', 'Nanobodies for accurate recognition of iso-tenuazonic acid and development of sensitive immunoassay for contaminant detection in foods', and 'Molecular Evolution of Antiparathion Nanobody with Enhanced Sensitivity and Specificity Based on Structural Analysis'.
Dimer peptidomimetics-based non-toxic immunoassay for bongkrekic acid in food and biosamples compatible with smartphone demonstration
Advanced multi-scale analysis of segregation mechanisms in twin-roll casting of Al-Cu-Li alloys
Structural Insights into the Stability and Recognition Mechanism of the Antiquinalphos Nanobody for the Detection of Quinalphos in Foods
Molecular Evolution of Antiparathion Nanobody with Enhanced Sensitivity and Specificity Based on Structural Analysis
Effect of cerium addition on microstructure, thermal and rheological properties of hypoeutectic Al-Ni alloy
Improved Method Based on Retinex and Gabor for the Surface Defect Enhancement of Aluminum Strips
Nanobodies for accurate recognition of iso-tenuazonic acid and development of sensitive immunoassay for contaminant detection in foods
Nanobodies as binding-chaperones stabilize the recombinant Bombyx mori acetylcholinesterase and protect the enzyme activity in pesticide detection
Preparation of a Bombyx mori acetylcholinesterase enzyme reagent through chaperone protein disulfide isomerase co-expression strategy in Pichia pastoris for detection of pesticides
Guided Evolution of Recombinant Bombyx mori Acetylcholinesterase II by Homology Modeling to Change Pesticide Sensitivity