Area of research
Materials Chemistry · Water Science and Technology
Research interest
Research focused on Membrane and Desalination, with related work in Graphene, Nanofiltration, Heterojunction. Notable publications include 'Molecular dynamics study on water desalination through functionalized nanoporous graphene', 'Efficient band structure tuning, charge separation, and visible-light response in ZrS 2 -based van der Waals heterostructures', and 'Organic Small Molecule Based Photothermal Agents with Molecular Rotors for Malignant Breast Cancer Therapy'.
Highly porous nanofiber-supported monolayer graphene membranes for ultrafast organic solvent nanofiltration
Intercalation of Metal Ions into Ti<sub>3</sub>C<sub>2</sub>T<i><sub>x</sub></i> MXene Electrodes for High‐Areal‐Capacitance Microsupercapacitors with Neutral Multivalent Electrolytes
All-in-One Molecular Aggregation-Induced Emission Theranostics: Fluorescence Image Guided and Mitochondria Targeted Chemo- and Photodynamic Cancer Cell Ablation
Organic Small Molecule Based Photothermal Agents with Molecular Rotors for Malignant Breast Cancer Therapy
Bilayer graphene with ripples for reverse osmosis desalination
Molecular dynamics study on water desalination through functionalized nanoporous graphene
Rational Design and Strain Engineering of Nanoporous Boron Nitride Nanosheet Membranes for Water Desalination
Water desalination and biofuel dehydration through a thin membrane of polymer of intrinsic microporosity: Atomistic simulation study
Nanoporous MoS<sub>2</sub> monolayer as a promising membrane for purifying hydrogen and enriching methane
Graphdiyne as a High-Efficiency Membrane for Separating Oxygen from Harmful Gases: A First-Principles Study
Efficient band structure tuning, charge separation, and visible-light response in ZrS<sub>2</sub>-based van der Waals heterostructures
Hexagonal Boron Nitride with Designed Nanopores as a High-Efficiency Membrane for Separating Gaseous Hydrogen from Methane