Area of research
Electronic, Optical and Magnetic Materials · Aerospace Engineering
Research interest
Research interests include Electromagnetic wave absorption materials, Advanced Antenna and Metasurface Technologies, Advanced biosensing and bioanalysis techniques, and Metamaterials and Metasurfaces Applications.
Stepwise Self-Assembly of Multisegment Mesoporous Silica Nanobamboos for Enhanced Thermal Insulation
Elucidating Mesostructural Effects on Thermal Conductivity for Enhanced Insulation Applications.
Electrochemiluminescence Enhancement and Passivation Mitigation in Carbon Nitride Semiconductors via an Integrated Ternary Heterostructure Strategy
Two Birds with one Stone: Dual-mode immunoassay constructed using a novel emitter ethylene glycol-induced perylene diimide and a multifunctional ANS probe
Lattice Regularization by Manipulating Over‐Stoichiometric Defects Yields High‐Performance (Bi,Sb) <sub>2</sub> Te <sub>3</sub> Thermoelectrics
Ultrathin‐N <sub>2</sub> C‐Deficient Carbon Nitride for Stabilized Enhancement of Electrochemiluminescence
Construction of a Three-Dimensional-Printed Immunosensing Platform Based on Smartphone Photothermal Signal Integration
NiCo‐LDH Hollow Nanocage Oxygen Evolution Reaction Promotes Luminol Electrochemiluminescence
Dopant Engineering of Flexible MNPs/TPU/PPy Core–Shell Films for Controllable Electromagnetic Interference Shielding
Morphology-Evolved Succulent-like FeCo Microarchitectures with Magnetic Configuration Regulation for Enhanced Microwave Absorption
Confined Magnetic‐Dielectric Balance Boosted Electromagnetic Wave Absorption
Multi‐Path Electron Transfer in 1D Double‐Shelled Sn@Mo<sub>2</sub>C/C Tubes with Enhanced Dielectric Loss for Boosting Microwave Absorption Performance
Synthesis of Nonspherical Hollow Architecture with Magnetic Fe Core and Ni Decorated Tadpole‐Like Shell as Ultrabroad Bandwidth Microwave Absorbers
MOF-Derived Ni1−xCox@Carbon with Tunable Nano–Microstructure as Lightweight and Highly Efficient Electromagnetic Wave Absorber
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
Engineering Phase Transformation of MoS<sub>2</sub>/RGO by N-doping as an Excellent Microwave Absorber
MOF-derived yolk-shell Ni@C@ZnO Schottky contact structure 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
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
Enhanced microwave absorption performance from abundant polarization sites of ZnO nanocrystals embedded in CNTs <i>via</i> confined space synthesis
Six-Year Immunologic Recovery and Virological Suppression of HIV Patients on LPV/r-Based Second-Line Antiretroviral Treatment: A Multi-Center Real-World Cohort Study in China
SP8 and SP9 coordinately promote D2-type medium spiny neuron production by activating <i>Six3</i> expression
Direct Generation of Human Neuronal Cells from Adult Astrocytes by Small Molecules
Clinical characteristics of myelin oligodendrocyte glycoprotein seropositive optic neuritis: a cohort study in Shanghai, China
Direct Conversion of Normal and Alzheimer’s Disease Human Fibroblasts into Neuronal Cells by Small Molecules
Porous Au–Ag Alloy Particles Inlaid AgCl Membranes As Versatile Plasmonic Catalytic Interfaces with Simultaneous, in Situ SERS Monitoring