Area of research
Renewable Energy, Sustainability and the Environment · Nature and Landscape Conservation
Research interest
Research interests include Electrocatalysts for Energy Conversion, Ecology and Vegetation Dynamics Studies, Supercapacitor Materials and Fabrication, and Catalytic Processes in Materials Science.
Synergistic doping and interfacial engineering for tuning surface electronic structure in C@ZnSn LDH toward enhanced photocatalytic oxidation of aromatic VOCs
Surface Hydroxyl and Oxygen Vacancies Engineering in ZnSnAl LDH: Synergistic Promotion of Photocatalytic Oxidation of Aromatic VOCs
Effects of daytime and nighttime warming on soil microbial diversity
Integrated outcomes of large-scale ecological restoration projects on biodiversity–eco-environment–society in China
Recent Advances on Transition‐Metal‐Based Layered Double Hydroxides Nanosheets for Electrocatalytic Energy Conversion
Deep Photocatalytic Oxidation of Aromatic VOCs on ZnSn LDH: Promoting Role of Electron Enrichment of Surface Hydroxyl
Anchoring hydroxyl intermediate on NiCo(OOH)<i><sub>x</sub></i> nanosheets to enable highly efficient electrooxidation of benzyl alcohols
One-step architecture of bifunctional petal-like oxygen-deficient NiAl-LDHs nanosheets for high-performance hybrid supercapacitors and urea oxidation
Global patterns and abiotic drivers of ecosystem multifunctionality in dominant natural ecosystems
Efficient electrooxidation of biomass-derived aldehydes over ultrathin NiV-layered double hydroxides films
Migration of vegetation boundary between alpine steppe and meadow on a century-scale across the Tibetan Plateau
Electrochemical upgrading of biomass-derived 5-hydroxymethylfurfural and furfural over oxygen vacancy-rich NiCoMn-layered double hydroxides nanosheets
In situ growth of hydrophilic nickel-cobalt layered double hydroxides nanosheets on biomass waste-derived porous carbon for high-performance hybrid supercapacitors
Cushion plants as critical pioneers and engineers in alpine ecosystems across the Tibetan Plateau
Trimetallic NiCoFe-Layered Double Hydroxides Nanosheets Efficient for Oxygen Evolution and Highly Selective Oxidation of Biomass-Derived 5-Hydroxymethylfurfural
Facile synthesis of Ni-, Co-, Cu-metal organic frameworks electrocatalyst boosting for hydrogen evolution reaction
Facile synthesis of defect-rich ultrathin NiCo-LDHs, NiMn-LDHs and NiCoMn-LDHs nanosheets on Ni foam for enhanced oxygen evolution reaction performance