Area of research
Renewable Energy, Sustainability and the Environment · Pollution
Research interest
Research interests include Photocatalysis, Materials science, Raman spectroscopy, Microplastics, Electric field, and Chemistry.
MPs Entering Human Circulation through Infusions: A Significant Pathway and Health Concern
Strong Electric Fields on Water Microdroplets Enable Near-Unity Selectivity in H<sub>2</sub>O<sub>2</sub> Photosynthesis
Substantially improved efficiency and selectivity of carbon dioxide reduction by superior hydrated electron in microdroplet
Air-water interface of microdroplet enhances photocatalytic oxidative species generation and utilization
Nanoplastics Detected in Commercial Sea Salt
Optimized production of invasive animal biochar for arsenic immobilization and methane oxidation in contaminated soils using response surface methodology
Automatic Identification of Individual Nanoplastics by Raman Spectroscopy Based on Machine Learning
Highly efficient photocatalytic H<sub>2</sub>O<sub>2</sub>production in microdroplets: accelerated charge separation and transfer at interfaces
Significant Acceleration of Photocatalytic CO<sub>2</sub> Reduction at the Gas‐Liquid Interface of Microdroplets**
Rapid detection of nanoplastics down to 20 nm in water by surface-enhanced raman spectroscopy
Strong electric field force at the air/water interface drives fast sulfate production in the atmosphere
Significantly Accelerated Photochemical Perfluorooctanoic Acid Decomposition at the Air–Water Interface of Microdroplets
Fast detection and 3D imaging of nanoplastics and microplastics by stimulated Raman scattering microscopy
Significantly accelerated photochemical and photocatalytic reactions in microdroplets
V-shaped substrate for surface and volume enhanced Raman spectroscopic analysis of microplastics