Ganzhou
China
Jiangxi University of Science and Technology - College of Rare Earths
perovskite, ferroelectrics, Ceramics, Lead-free
Core-shell structure, MnFe2O4, Metal-Organic frameworks, electromagnetic wave absorption
Hydrogen Evolution Reaction, doping, heterojunction, Oxygen vacancy
Electrocatalysis, Hydrogen evolution reaction, Oxygen evolution reaction, heterojunction, Tungsten based catalyst
Microwave absorbing materials, Flaky FeSiCr alloy powder, Carbonization heat treatment, Impedance matching
Microwave absorbing material, FeSiCr, Core-shell structure, Impedance matching
Electrocatalysis, Hydrogen evolution reaction, Oxygen evolution reaction, Heterojunction, Tungsten based catalyst
Microwave absorption material, Heterointerfaces, Carbon/iron-based materials, Oxygen atmosphere heat treatment
Absorbing materials, SiC nanowhiskers, MOFs materials, Calcination, Impedance matching, Magnetic loss
solid-state electrolyte, Silicon dioxide, Zinc-air battery
SiC nanowires, CNTs loaded Co particles, Multiple loss synergies, High-temperature wave-absorbing materials
FeSiCr powder, vacuum annealing, grain size, wave absorbing properties
Absorbing materials, SiC nanowhiskers, carbon nanotube, dielectric loss
FeSiBNbCu, in situ composite, absorbing materials, amorphous
FeSiBNbCu nano-amorphous, MIL-101(Fe), absorbing materials
NiZn-Ferrite, Ni-MOF74, Ti3C2Tx MXene, Electromagnetic wave absorption, porous and multilayer structure
Ceramic SiC, Co-CNT, Multiple loss synergies, High-temperature wave-absorbing materials
Absorbing materials, MOF derivatives, FeSiB-based amorphous, heterogeneous structure
Absorbing materials, MOF derivatives, FeSiB based amorphous soft magnetic alloy, Electromagnetic wave loss mechanism