Sipailou 2
Nanjing, Jiangsu Province 210096
China
Southeast University - School of Materials Science and Engineering
MAX phase, whisker, isotope, atomic motion, DFT
Solid electrolyte, polymer in salt, interfacial protection layer, Li-metal battery
solid electrolyte, polymer in salt, interfacial protection layer, Li-metal battery
Polymer nanolayer, Photochemical-assisted zinc-air battery, Low charge potential, Photoelectrochemical Cell
Antiferroelectric ceramics, Ultrafast discharge rate, Relaxor characteristics Pulsed power capacitors, Energy storage density
Potassium-ion batteries, conversion-type anodes, Se doping, conversion reactivity, anion doping evolution
antiferroelectric ceramics, Grain size, Bandgap width, Breakdown strength, energy storage density
Ti2AlN and Ti2AlC, Ag-based composites, interfacial reaction, Physical properties, Arc erosion
Multifunctional aerogels, broadband electromagnetic absorption, tunable electromagnetic response, mechano-electromagnetic coupling
hydrophobicity, zincophilicity, zinc borate, dendrite-free anode, aqueous zinc-ion batteries
MAX phase, mechanochemical decomposition, metallic whisker growth, one-dimensional materials
MAX phases, Cr2GaC, Sol-gel, electrospinning, nanowires
Ti2SnC, bimetallic whisker, mechanochemically decomposed, atomized Sn, interface flow
Zinc metal anode, Electrolyte additive, DTPA, interfacial complex
MAX phase, Ag-based composites, interface, resistivity, arc erosion
Ag/Ti3AlC2 composites, plastic deformation, Processing maps, Orientation, Thermal simulation
in-situ formation, Nano-Sn, Ti2SnC MAX phase, Energy storage, Volumetric capacity
mimicking suspension, photoelectrochemical cell, carbon nitride, hydrogel, n-type semiconductor, photocathode, hydrogen evolution
Dynamically tunable microwave absorption, MXene, Thermal insulation, Pressure sensing, Multifunction
Aqueous zinc ion batteries, Zn anode, Dendrite, MXene-based Quantum Dots, (101) facet growth
max phase, Ag-based composites, interface, resistivity, arc erosion
Tin whiskers, Graphene, MAX phase, mechanochemical decomposition
Ni3ZnC0.7, Carbon nanofibers, Multiscale heterointerface, Microwave absorption, Zn volatilization