Area of research
Electronic, Optical and Magnetic Materials · Aerospace Engineering
Research interest
Research interests include Materials science, Microwave, Condensed matter physics, Absorption (acoustics), Ferromagnetism, and Anisotropy.
Confining Magnetic Response by the Surface Reorganization of Buckling Permalloy Microspheres for Boosting Microwave Absorption
Engineering Structural Anisotropy for Visualizing and Controlling Nanomagnetic Interactions with High‐Frequency Electromagnetic Wave
Nano‐Heterointerface Coupling Engineering Induced Electromagnetic Response by Tailored Spindle Arrays for Microwave Absorption
Probing Interfacial Nanostructures of Electrochemical Energy Storage Systems by In-Situ Transmission Electron Microscopy
High-entropy nanoalloys anchored on entropy-compensating two-dimensional oxides for enhanced nanomagnetism
Spontaneous‐Chessboard‐Ordered Structure of PbMg <sub>0.5</sub> W <sub>0.5</sub> O <sub>3</sub> Multilayer Capacitors Offers Giant Electrocaloric Enthalpy Change Below Room Temperature
Distinct skyrmion phases at room temperature in two-dimensional ferromagnet Fe3GaTe2
Dimensional Self‐Assembled Magnetic Coupling via Embedding Ferromagnetic Nanoparticles in Multi‐Channel Fibers for Microwave Absorption
Dual‐coupling networks engineering of self‐assembled ferromagnetic microspheres with enhanced interfacial polarization and magnetic interaction for microwave absorption
Balancing MXene Surface Termination and Interlayer Spacing Enables Superior Microwave Absorption
Hierarchical Fe-Co@TiO<sub>2</sub> with Incoherent Heterointerfaces and Gradient Magnetic Domains for Electromagnetic Wave Absorption
Multi-interfacial 1D magnetic ferrite@C fibers for broadband microwave absorption
Anisotropic Interfaces Support the Confined Growth of Magnetic Nanometer‐Sized Heterostructures for Electromagnetic Wave Absorption
Construction of one-dimensional hierarchical MoS2/Ni3S2 composites with enhanced interfacial polarization and improved wideband microwave absorption
Highly Selective Nano‐Interface Engineering in Multishelled Nanocubes for Enhanced Broadband Electromagnetic Attenuation
Finite‐Sized Atom Reconstruction Enhanced High‐Frequency Multi‐Domain Magnetic Response
Manipulating the Magnetic Bubbles and Topological Hall Effect in 2D Magnet Fe<sub>5</sub>GeTe<sub>2</sub>
Controllable Topological Magnetic Transformations in the Thickness-Tunable van der Waals Ferromagnet Fe<sub>5</sub>GeTe<sub>2</sub>