Area of research
Renewable Energy, Sustainability and the Environment · Inorganic Chemistry
Research interest
Research interests include Metal-Organic Frameworks: Synthesis and Applications, Electrocatalysts for Energy Conversion, Advanced Photocatalysis Techniques, and X-ray Diffraction in Crystallography.
Enhancing photocatalytic N2 fixation efficiency through the construction of optimized hollow ZnO/Cu Mott-Schottky heterojunction microreactors
Elastic films of single-crystal two-dimensional covalent organic frameworks
Surface plasmon resonance effect cooperated with Z-scheme heterostructure for enhancing photocatalytic nitrogen reduction to ammonia
Directional surface reconstruction of C and S Co-Doped Co2VO4/CoP for the cooperative enhancement of hydrogen production via seawater electrolysis
Room-Temperature Laser Planting of High-Loading Single-Atom Catalysts for High-Efficiency Electrocatalytic Hydrogen Evolution
Digital light processing 4D printing multilayer polymers with tunable mechanical properties and shape memory behavior
In-situ detection technique for charge transfer behavior of direct Z-scheme BiVO4/UiO-66-NH2 composites during photocatalytic thioanisole conversion
Activating and stabilizing Co sites in CoP for triggering oxygen electrocatalysis in zinc-air battery
Recognition of maize seed varieties based on hyperspectral imaging technology and integrated learning algorithms
Hexa-Branched Nanographenes with Large Two-Photon Absorption
4D printing of shape memory polymer nanocomposites for enhanced performances and tunable response behavior
Direct photo-oxidation of methane to methanol over a mono-iron hydroxyl site
Magnetic 3d–4f Chiral Clusters Showing Multimetal Site Magneto-Chiral Dichroism
Two-dimensional metal–organic layers constructed from Hf<sub>6</sub>/Hf<sub>12</sub>-oxo clusters and a trigonal pyramidal phosphine oxide ligand
Metal–organic frameworks embedded in a liposome facilitate overall photocatalytic water splitting
Neighboring Zn–Zr Sites in a Metal–Organic Framework for CO<sub>2</sub> Hydrogenation
Bifunctional Metal–Organic Layer with Organic Dyes and Iron Centers for Synergistic Photoredox Catalysis
Multiple Cuprous Centers Supported on a Titanium-Based Metal–Organic Framework Catalyze CO<sub>2</sub> Hydrogenation to Ethylene
Bifunctional Metal–Organic Layers for Tandem Catalytic Transformations Using Molecular Oxygen and Carbon Dioxide
A probe-free electrochemical immunosensor for methyl jasmonate based on ferrocene functionalized-carboxylated graphene-multi-walled carbon nanotube nanocomposites
Light-driven proton transport across liposomal membranes enabled by Janus metal-organic layers
Preparation of hollow metal–organic frameworks <i>via</i> epitaxial protection and selective etching
FeCo-based hybrid MOF derived active species for effective oxygen evolution
Metal–Organic Framework with Dual Active Sites in Engineered Mesopores for Bioinspired Synergistic Catalysis
Highly Dispersed Ni Catalyst on Metal–Organic Framework-Derived Porous Hydrous Zirconia for CO<sub>2</sub> Methanation
Machine-Learning-Guided Morphology Engineering of Nanoscale Metal-Organic Frameworks
Ratiometric electrochemical sensor for accurate detection of salicylic acid in leaves of living plants
Metal–Organic Layers Hierarchically Integrate Three Synergistic Active Sites for Tandem Catalysis
Highly flexible reduced graphene oxide@polypyrrole–polyethylene glycol foam for supercapacitors
Cooperative copper centres in a metal–organic framework for selective conversion of CO2 to ethanol
CAREER: Cross-Layer Integration of Stochastic Processing Ensembles for Versatile Intelligent Computing
EAGER: Accelerating Scalable Stochastic Neuro-Inspired Computing With Spintronics: Devices to Systems
Collaborative Research: Accurate and Structure-Preserving Numerical Schemes for Variable Temperature Phase Field Models and Efficient Solvers
Collaborative Research: Efficient, Accurate, and Structure-Preserving Numerical Methods for Phase Fields-Type Models with Applications
Acoustic Streaming Flows Induced by Microbubbles in Viscoelastic Fluids: Fundamentals and Applications to Micro-Rheometry
Highly efficient and accurate numerical schemes for nonlinear gradient flows with energy stability
Collaborative Research: Stable and Efficient Convexity-splitting Schemes for Bistable Gradient PDEs
On the Nonlinear Elastostatic Problems of Bending, Torsion, Radial Expansion/Contraction, and Eversion for Compressible Isotropic Materials
Supercomputer Study of New Device Concepts Utilizing Quantum Mechanical Effects & the Superlattice Technology
Nonlinear Continuum Mechanics
Nonlinear Continuum Mechanics