Area of research
Atmospheric Science · Health, Toxicology and Mutagenesis
Research interest
Research focused on Carbon black and Dehydrogenation, with related work in Soot, Haze, Mixing (physics). Notable publications include 'Fractal Dimensions and Mixing Structures of Soot Particles during Atmospheric Processing', 'Influence of ground waste clay brick on properties of fresh and hardened concrete', and 'Key Role of Nitrate in Phase Transitions of Urban Particles: Implications of Important Reactive Surfaces for Secondary Aerosol Formation'.
Improved representation of black carbon mixing structures suggests stronger direct radiative heating
Pore Characteristics of Over‐Mature to Semi‐Graphitised Marine Shale: A Case Study of the Longmaxi Formation, Upper Yangtze Area
Liquid-liquid phase separation reduces radiative absorption by aged black carbon aerosols
CNTs decorated with CoFeB as a dopant to remarkably improve the dehydrogenation/rehydrogenation performance and cyclic stability of MgH2
MoSe2 hollow nanospheres decorated with FeNi3 nanoparticles for enhancing the hydrogen storage properties of MgH2
Janus TiXY Monolayers with Tunable Berry Curvature
Key Role of Nitrate in Phase Transitions of Urban Particles: Implications of Important Reactive Surfaces for Secondary Aerosol Formation
Fractal Dimensions and Mixing Structures of Soot Particles during Atmospheric Processing
Chemical composition, source, and process of urban aerosols during winter haze formation in Northeast China
Morphology, composition, and mixing state of primary particles from combustion sources — crop residue, wood, and solid waste
Influence of ground waste clay brick on properties of fresh and hardened concrete