Area of research
Electronic, Optical and Magnetic Materials · Aerospace Engineering
Research interest
Research interests include Materials science, Microwave, Absorption (acoustics), Reflection loss, Nanotechnology, and Stacking.
Programmable Electromagnetic Wave Absorption via Tailored Metal Single Atom‐Support Interactions
Engineering Structural Anisotropy for Visualizing and Controlling Nanomagnetic Interactions with High‐Frequency Electromagnetic Wave
High-entropy nanoalloys anchored on entropy-compensating two-dimensional oxides for enhanced nanomagnetism
Functional nanoporous graphene superlattice
Insights into Civilian Electromagnetic Absorption Materials: Challenges and Innovative Solutions
Dispersing Magnetic Nanoparticles into Staggered, Porous Nano‐Frameworks: Weaving and Visualizing Nanoscale Magnetic Flux Lines for Enhanced Electromagnetic Absorption
Visualizing Nanoscale Interlayer Magnetic Interactions and Unconventional Low‐Frequency Behaviors in Ferromagnetic Multishelled Structures
Advancements in high-entropy materials for electromagnetic wave absorption
Construction of chiral magnetic structure with enhancement in magnetic coupling for efficient Low-Frequency microwave absorption
Biomimetic Multi‐Interface Design of Raspberry‐like Absorbent: Gd‐doped FeNi<sub>3</sub>@Covalent Organic Framework Derivatives for Efficient Electromagnetic Attenuation
Controllable Regulation of MoS<sub>2</sub> Surface Atomic Exposure for Boosting Interfacial Polarization and Microwave Absorption
Atomic and Electronic Reconstruction in Defective 0D Molybdenum Carbide Heterostructure for Regulating Lower‐Frequency Microwaves
Multi-interfacial 1D magnetic ferrite@C fibers for broadband microwave absorption
Highly Selective Nano‐Interface Engineering in Multishelled Nanocubes for Enhanced Broadband Electromagnetic Attenuation
Structural Defects in Phase‐Regulated High‐Entropy Oxides toward Superior Microwave Absorption Properties
Remarkable Magnetic Exchange Coupling via Constructing Bi‐Magnetic Interface for Broadband Lower‐Frequency Microwave Absorption
Joule-heated flexible carbon composite towards the boosted electromagnetic wave shielding properties