Area of research
Ceramics and Composites · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Catalysis and Spermidine, with related work in Metabolomics, Dimensionless quantity, Polyamine oxidase. Notable publications include 'A novel copper-catalyzed reductive coupling of N-tosylhydrazones with H-phosphorus oxides', 'Spermidine carbon dots enhance thermotolerance by modulating photosynthesis and cellular redox homeostasis in tomato', and 'UPLC-Triple TOF-MS/MS based metabolomics approach to reveal the influence of nitrogen levels on Isatis indigotica seedling leaf'.
Microwave-Assisted Rapid Synthesis of Near-Infrared Light-Responsive Pd Single-Atom Nanozymes for Colorimetric Detection of Acetylcholinesterase Activity
Spd-CDs-driven respiratory burst oxidase homolog/polyamine oxidase-dependent H2O2 signaling molecule engineering for salt tolerance in tomato
Areca nut and oral cancer: warnings and prevention in China
Systemic immune-inflammatory index predict short-term outcome in recurrent/metastatic and locally advanced cervical cancer patients treated with PD-1 inhibitor
Data-driven prediction of dimensionless quantities for semi-infinite target penetration by integrating machine-learning and feature selection methods
Single copper sites dispersed on metal-organic frameworks boost the degradation of nerve agent simulants
Spermidine carbon dots enhance thermotolerance by modulating photosynthesis and cellular redox homeostasis in tomato
UPLC-Triple TOF-MS/MS based metabolomics approach to reveal the influence of nitrogen levels on Isatis indigotica seedling leaf
A novel copper-catalyzed reductive coupling of N-tosylhydrazones with H-phosphorus oxides