Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Environmental science, Materials science, Self-healing hydrogels, Computer science, Desalination, and Solar desalination.
Advancing nonadiabatic molecular dynamics simulations in solids with E(3) equivariant deep neural hamiltonians
Bridging materials innovations to sorption-based atmospheric water harvesting devices
Spin-dependent graph neural network potential for magnetic materials
Universal Machine Learning Kohn–Sham Hamiltonian for Materials
Bridging Innovations of Phase Change Heat Transfer to Electrochemical Gas Evolution Reactions
Physics-based prediction of moisture-capture properties of hydrogels
Design of a Compact Multicyclic High-Performance Atmospheric Water Harvester for Arid Environments
Extreme Water Uptake of Hygroscopic Hydrogels through Maximized Swelling‐Induced Salt Loading
Extreme salt-resisting multistage solar distillation with thermohaline convection
Effect of Twist Angle on Interfacial Thermal Transport in Two-Dimensional Bilayers
Unusual Temperature Dependence of Water Sorption in Semicrystalline Hydrogels
Design considerations for next-generation sorbent-based atmospheric water-harvesting devices
Highly efficient and salt rejecting solar evaporation via a wick-free confined water layer
A unified approach and descriptor for the thermal expansion of two-dimensional transition metal dichalcogenide monolayers
Passive, high-efficiency thermally-localized solar desalination
Dual-Stage Atmospheric Water Harvesting Device for Scalable Solar-Driven Water Production