Area of research
Artificial Intelligence · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Quantum Information and Cryptography, Quantum Mechanics and Applications, Quantum Computing Algorithms and Architecture, and Advanced MRI Techniques and Applications.
Gold Nanoparticles Confined in Mesoporous Bioactive Glass for Periodontitis Therapy
Tumor-microenvironment double-responsive shrinkable nanoparticles fabricated via facile assembly of laponite with a bioactive oligosaccharide for anticancer therapy
Size-transformable gelatin/nanochitosan/doxorubicin nanoparticles with sequentially triggered drug release for anticancer therapy
Gold Nanoparticle-Incorporated Chitosan Nanogels as a Theranostic Nanoplatform for CT Imaging and Tumour Chemotherapy
K. Zheng et al. Gold-nanoparticle-based multistage drug delivery system for antitumor therapy
Chlorella vulgaris Extract-Decorated Gold Nanoparticle Hybridized Antimicrobial Hydrogel as a Potential Dressing
Tumor-mediated shape-transformable nanogels with pH/redox/enzymatic-sensitivity for anticancer therapy
Quantitative susceptibility mapping‐based cerebral metabolic rate of oxygen mapping with minimum local variance
Unconditional Stability for Multistep ImEx Schemes: Theory
Preconditioned total field inversion (TFI) method for quantitative susceptibility mapping
Longitudinal change in magnetic susceptibility of new enhanced multiple sclerosis (MS) lesions measured on serial quantitative susceptibility mapping (QSM)
Cerebral metabolic rate of oxygen (CMRO<sub>2</sub>) mapping with hyperventilation challenge using quantitative susceptibility mapping (QSM)
Background field removal by solving the Laplacian boundary value problem
Simultaneous Phase Unwrapping and Removal of Chemical Shift (SPURS) Using Graph Cuts: Application in Quantitative Susceptibility Mapping
Magnetic susceptibility anisotropy: Cylindrical symmetry from macroscopically ordered anisotropic molecules and accuracy of MRI measurements using few orientations
MRI: Acquisition of Focused Ion Beam-Scanning Electron Microscope for the Multidisciplinary Research and Education at the University of Louisiana at Lafayette
EAGER: High-Efficiency and Cost-Effective Electrocatalysts for the Direct Conversion of Methane to Methanol at Ambient Conditions
EAGER: Direct Storage of Solar Energy as Electricity
Mechanistic Studies of High Temperature Oxygen Electrodes with Simultaneous High Activity and Stability