Area of research
Electronic, Optical and Magnetic Materials · Aerospace Engineering
Research interest
Research interests include Electromagnetic wave absorption materials, Advanced Antenna and Metasurface Technologies, Metamaterials and Metasurfaces Applications, and Perovskite Materials and Applications.
Monolayer Interfacial Assembly toward Two‐Dimensional Mesoporous Heterostructure for Boosting Wave Absorption
Significant improving magnetic properties and thermal conductivity of FeBSiPCNbCu nanocrystalline powder cores by designing novel ZnO insulating layer
Construction of in-situ grid conductor skeleton and magnet core in biodegradable poly (butyleneadipate-co-terephthalate) for efficient electromagnetic interference shielding and low reflection
Single‐atom catalyst application in distributed renewable energy conversion and storage
Effect of different SAPO-34 film thickness on coke resistance performance of SAPO-34/ZSM-5/quartz film in MTA reaction
Magneto‐optical, thermal, and mechanical properties of polycrystalline Tb <sub>3</sub> Al <sub>5</sub> O <sub>12</sub> transparent ceramics
Self-Assembly MXene-rGO/CoNi Film with Massive Continuous Heterointerfaces and Enhanced Magnetic Coupling for Superior Microwave Absorber
Magnetic Interacted Interaction Effect in MXene Skeleton: Enhanced Thermal‐Generation for Electromagnetic Interference Shielding
Hierarchical Magnetic Network Constructed by CoFe Nanoparticles Suspended Within “Tubes on Rods” Matrix Toward Enhanced Microwave Absorption
3D Seed-Germination-Like MXene with In Situ Growing CNTs/Ni Heterojunction for Enhanced Microwave Absorption via Polarization and Magnetization
Enhanced dielectric polarization from disorder-engineered Fe3O4@black TiO2-x heterostructure for broadband microwave absorption
Enhanced visualizing charge distribution of 2D/2D MXene/MoS2 heterostructure for excellent microwave absorption performance
In-situ regrowth constructed magnetic coupling 1D/2D Fe assembly as broadband and high-efficient microwave absorber
Synthesis of Nonspherical Hollow Architecture with Magnetic Fe Core and Ni Decorated Tadpole‐Like Shell as Ultrabroad Bandwidth Microwave Absorbers
Type 1 interferon aggravates lipopolysaccharide-induced sepsis through upregulating Caspase-11 and Gasdermin D
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
3D hierarchical local heterojunction of MoS2/FeS2 for enhanced microwave absorption
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
TBX6-associated congenital scoliosis (TACS) as a clinically distinguishable subtype of congenital scoliosis: further evidence supporting the compound inheritance and TBX6 gene dosage model
Ferromagnetic Co<sub>20</sub>Ni<sub>80</sub> nanoparticles encapsulated inside reduced graphene oxide layers with superior microwave absorption performance
3D conductive network wrapped CeO2-x Yolk@Shell hybrid microspheres for selective-frequency microwave absorption
A gas-pressurized torrefaction method for biomass wastes
pH-responsive flower-like micelles constructed via oxime linkage for anticancer drug delivery