Area of research
Water Science and Technology · Mechanical Engineering
Research interest
Research focused on Membrane and Chemical engineering, with related work in Polymer, Permeance, Fibroin. Notable publications include 'Design and prediction of metal organic framework-based mixed matrix membranes for CO2 capture via machine learning', 'Thin-film nanocomposite reverse osmosis membranes incorporated with citrate-modified layered double hydroxides (LDHs) for brackish water desalination and boron removal', and 'Synergizing machine learning, molecular simulation and experiment to develop polymer membranes for solvent recovery'.
Nanofiller-confined spatial fluctuation in monomer diffusion synthesizing ultrafast reverse osmosis membranes driven by hydrogen-bonding networks
15-crown-5 functionalized layered double hydroxide enabling thin-film nanocomposite membranes for enhanced reverse osmosis desalination and boron removal
Elevating gas separation performance of Pebax-based membranes by blending with a PDMS-PEO block copolymer for CO2 capture and separation
Facile infiltration of polyethyleneimine as a strong CO2 retardant in scalable dual-polymer membranes for H2/CO2 separation
Polymer‐MOF Network Enabling Ultrathin Coating for Post‐Combustion Carbon Capture
Co-migration behavior of toluene coupled with trichloroethylene and the response of the pristine groundwater ecosystems – A mesoscale indoor experiment
Synergizing machine learning, molecular simulation and experiment to develop polymer membranes for solvent recovery
Synergistic dual-polymer blend membranes with molecularly mixed macrocyclic cavitands for efficient pre-combustion CO2 capture
Design and prediction of metal organic framework-based mixed matrix membranes for CO2 capture via machine learning
Thin-film nanocomposite reverse osmosis membranes incorporated with citrate-modified layered double hydroxides (LDHs) for brackish water desalination and boron removal
Preparation of a regenerated silk fibroin film and its adsorbability to azo dyes