Area of research
Electronic, Optical and Magnetic Materials · Aerospace Engineering
Research interest
Research interests include Electromagnetic wave absorption materials, Advanced Antenna and Metasurface Technologies, Multimodal Machine Learning Applications, and Domain Adaptation and Few-Shot Learning.
Med-R1: Reinforcement Learning for Generalizable Medical Reasoning in Vision-Language Models
Confining Magnetic Response by the Surface Reorganization of Buckling Permalloy Microspheres for Boosting Microwave Absorption
EEE-Bench: A Comprehensive Multimodal Electrical And Electronics Engineering Benchmark
Recent progress in carbon-based materials and loss mechanisms for electromagnetic wave absorption
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
Stacking selected polarization switching and phase transition in vdW ferroelectric α-In2Se3 junction devices
Distinct skyrmion phases at room temperature in two-dimensional ferromagnet Fe3GaTe2
Heterointerface engineering in porous microspheres for magnetic-dielectric balance to boost electromagnetic wave absorption
Dimensional Self‐Assembled Magnetic Coupling via Embedding Ferromagnetic Nanoparticles in Multi‐Channel Fibers for Microwave Absorption
Controllable Regulation of MoS<sub>2</sub> Surface Atomic Exposure for Boosting Interfacial Polarization and Microwave Absorption
Nanozyme Catalytic Performance Enhancement through Defect and Electronic Structure Regulation of Metal-Doped NiCo<sub>2</sub>O<sub>4</sub>@Pd
Highly Selective Nano‐Interface Engineering in Multishelled Nanocubes for Enhanced Broadband Electromagnetic Attenuation
Manipulating the Magnetic Bubbles and Topological Hall Effect in 2D Magnet Fe<sub>5</sub>GeTe<sub>2</sub>