Area of research
Biomedical Engineering · Water Science and Technology
Research interest
Research interests include Membrane Separation Technologies, Bone Tissue Engineering Materials, Adsorption and biosorption for pollutant removal, and Graphene and Nanomaterials Applications.
Effects of sintering additives on dimensional accuracy and strength of 3D-printed silica ceramics
High-valent metal-oxo species heterogeneous activation making use of MoS2 in a novel Electro-Fenton System: pH-independent catalytic environment and nonradical generation mechanism
Improving peroxymonosulfate activation mediated by oxygen vacancy-abundant BaTiO3/Co3O4 composites: The vital roles of BaTiO3
Fouling resistant and performance tunable ultrafiltration membranes via surface graft polymerization induced by atmospheric pressure air plasma
Targeting property and toxicity of a novel ultrasound contrast agent microbubble carrying the targeting and drug-loaded complex FA-CNTs-PTX on MCF7 cells
Effect of the addition CNTs on performance of CaP/chitosan/coating deposited on magnesium alloy by electrophoretic deposition
Study on the Effect of the Coating Thickness on Corrosion Behavior of AZ91D Magnesium Alloy in m-SBF
Calcium phosphate/chitosan composite coating: Effect of different concentrations of Mg2+ in the m-SBF on its bioactivity
EAGER: Collaborative Research:Blockchain Graphs as Testbeds of Power Grid Resilience and Functionality Metrics
Travel Support for Hinode-14/IRIS-11 Joint Science Meeting
EAGER: Collaborative Research: Local Topological Properties of Power Flow Networks, and Their Role in Power System Functionality
Collaborative Research: SHINE: Data-constrained Simulations of Coronal Mass Ejection Initiation and Propagation
SHINE: Study the Evolution of Coronal Mass Ejections from the Sun to the Earth
CAREER: Comprehensive Study of Initiation and Evolution of Solar Energetic Phenomena
SHINE: Understanding Characteristics of Coronal Mass Ejections (CMEs)
A Study on Origin of Coronal Mass Ejections