Area of research
Biomedical Engineering · Molecular Biology
Research interest
Research interests include Biology, Methanol, Wetland, Nutrient cycle, Chronosequence, and Microbial population biology.
State-of-the-art advances in biotechnology for polyethylene terephthalate bio-depolymerization
Co-Occurrence Patterns of Soil Fungal and Bacterial Communities in Subtropical Forest-Transforming Areas
Rapid removal of 6:2 chlorinated polyfluorinated ether sulfonate from water by sludge-based biochar: Performance and mechanism
Poly (3, 4-propylenedioxythiophene)/Hollow carbon sphere composites supported Pt NPs to facilitate methanol oxidation reactions
PEDOT-embellished Ti<sub>3</sub>C<sub>2</sub>Tx nanosheet supported Pt–Pd bimetallic nanoparticles as efficient and stable methanol oxidation electrocatalysts
Diet drives the gut microbiome composition and assembly processes in winter migratory birds in the Poyang Lake wetland, China
Dry–wet seasonal variations of microbially mediated carbon metabolism in soils of a floodplain lake
Impact of litter quality on the stability and storage of soil carbon in flooded wetlands
Enhanced electrocatalytic performance of hydroxyl‑grafted PProDOT:PSS/YRFC/Pt composites for direct alcohol fuel cells
Soil bacterial and fungal communities and associated nutrient cycling in relation to rice cultivation history after reclamation of natural wetland
The succession of bacterial and fungal communities during decomposition of two hygrophytes in a freshwater lake wetland
A refined bound for the Z1-spectral radius of tensors
Soil bacterial and fungal communities and the associated nutrient cycling responses to forest conversion after selective logging in a subtropical forest of China
Firmicutes-enriched IS1447 represents a group of IS3-family insertion sequences exhibiting unique + 1 transcriptional slippage
Design, analysis and optimization of porous silicon microcavity based on silicon-on-insulator at optical communication wavelengths
The microclimate pH in poly(d,l-lactide-co-hydroxymethyl glycolide) microspheres during biodegradation
Research on High Sensitivity Caused by Broken 1-D Multilayer Stack Sensor Based on the Slow Bloch Mode