Area of research
Polymers and Plastics · Biomedical Engineering
Research interest
Research interests include Materials science, Microwave, Absorption (acoustics), Reflection loss, Nanotechnology, and Heterojunction.
Synergistic Structural and Defect Engineering in MoS <sub>2</sub> Featuring Ultra‐Expanded Interlayers for Fast‐Chargeable and Long‐Durable Sodium‐Ion Batteries
Versatile synthesis of uniform mesoporous superparticles from stable monomicelle units
Lattice-mismatch-free construction of III-V/chalcogenide core-shell heterostructure nanowires
Synthesis of branched silica nanotrees using a nanodroplet sequential fusion strategy
Modular super-assembly of hierarchical superstructures from monomicelle building blocks
MOF-Derived Ni1−xCox@Carbon with Tunable Nano–Microstructure as Lightweight and Highly Efficient Electromagnetic Wave Absorber
MOF Induces 2D GO to Assemble into 3D Accordion‐Like Composites for Tunable and Optimized Microwave Absorption Performance
Orientation growth modulated magnetic-carbon microspheres toward broadband electromagnetic wave absorption
Double ligand MOF-derived pomegranate-like Ni@C microspheres as high-performance microwave absorber
Multi-dimensional ZnO@MWCNTs assembly derived from MOF-5 heterojunction as highly efficient microwave absorber
MOF-derived yolk-shell Ni@C@ZnO Schottky contact structure for enhanced microwave absorption
Boosted Interfacial Polarization from Multishell TiO<sub>2</sub>@Fe<sub>3</sub>O<sub>4</sub>@PPy Heterojunction for Enhanced Microwave Absorption
Oriented Polarization Tuning Broadband Absorption from Flexible Hierarchical ZnO Arrays Vertically Supported on Carbon Cloth
Conductive-network enhanced microwave absorption performance from carbon coated defect-rich Fe2O3 anchored on multi-wall carbon nanotubes
Enhanced polarization from flexible hierarchical MnO<sub>2</sub>arrays on cotton cloth with excellent microwave absorption
A direct H2O2 production based on hollow porous carbon sphere-sulfur nanocrystal composites by confinement effect as oxygen reduction electrocatalysts
Ferromagnetic Co<sub>20</sub>Ni<sub>80</sub> nanoparticles encapsulated inside reduced graphene oxide layers with superior microwave absorption performance
Hollow porous Fe<sub>2</sub>O<sub>3</sub> microspheres wrapped by reduced graphene oxides with high-performance microwave absorption
3D conductive network wrapped CeO2-x Yolk@Shell hybrid microspheres for selective-frequency microwave absorption
Enhanced microwave absorption performance from abundant polarization sites of ZnO nanocrystals embedded in CNTs <i>via</i> confined space synthesis