Research
Bridging advanced electron microscopy techniques with sustainable energy solutions through innovative research
Research
Our group leverages cutting-edge environmental transmission electron microscopy to investigate atomic-scale environmental processes. We develop novel electrochemical strategies for CO2 conversion, aiming to bridge fundamental science with practical sustainability solutions.
Through interdisciplinary approaches combining materials science, chemistry, and physics, we push the boundaries of what can be observed and achieved at the nanoscale.
Environmental TEM
In-situ Atomic-Scale Imaging
Advanced environmental transmission electron microscopy techniques for real-time observation of atomic-scale environmental processes and material tran...
Electrochemistry
Energy Conversion & Storage
Novel electrochemical methods and materials for sustainable energy conversion, storage, and CO2 reduction applications....
CO2 Reduction
Sustainable Carbon Cycling
Innovative catalytic strategies for electrochemical CO2 conversion into valuable chemicals and fuels, contributing to carbon neutrality....
Research Facilities
State-of-the-art equipment and facilities supporting our cutting-edge research
Environmental TEM (ETEM)
In-situ atomic-resolution imaging under controlled gas environment
Electrochemical Workstation
Multi-channel electrochemical analysis system
CO2 Reduction Cell
Custom-designed flow cell for CO2 electrolysis
Collaboration Opportunities
We welcome academic partnerships and collaborative research initiatives. Join us in advancing the frontiers of environmental electron microscopy and sustainable energy.
Contact for Collaboration