Gallium-indium liquid metal in a vitrimer matrix forms conductive, flexible circuits while enabling recycling of thermoset-like electronics.
Heat treatment at 200-400°C restores moisture-exposed halide solid electrolyte conductivity by reversing structural changes and removing water effects.
Li2-X-Y intermetallic anodes raise Li-ion battery energy density while keeping low discharge potential, stability, and practical synthesis routes.
A Mg-Zn-Al/Ga oxide channel enables TFT deposition below 400°C while preserving electron mobility and chemical stability for 3D memory.
A c-axis-aligned IGZO crystalline region reduces oxygen vacancies and dangling bonds, helping semiconductor devices keep stable electrical characteristics.
A low-Tg glass-ceramic solid electrolyte improves air stability, ionic conductivity, and cathode adhesion without high-pressure processing.
A mixed amorphous-crystal middle layer blocks dislocations and seeds epitaxy, enabling lower-cost corundum crystal films with fewer defects.
Two-step heat treatment forms core-shell semiconductor nanoparticles that preserve production efficiency while improving band-edge emission purity.
A silicon-containing mixed middle layer blocks dislocations and seeds epitaxy, enabling high-quality corundum crystal growth at lower cost.
Core-shell gallium sulfide nanocrystals use S/Ga ratio control to narrow blue emission and improve luminous efficiency without cadmium.
A mixed amorphous-crystal middle layer enables low-defect corundum oxide epitaxy in mist CVD without a separate ELO mask, cutting process complexity.
A mixed amorphous-crystal middle layer in mist CVD blocks dislocations and seeds high-quality gallium oxide growth without mask steps.
A β-Ga2O3-like phosphor composition enables strong 650-1700 nm emission under ultraviolet, blue, or red excitation for sensing and detection.
Ni2+ and Cr3+ doped phosphors convert LED light into broad-band 1000-1700 nm SWIR emission for compact spectroscopy and imaging.
A tuned rare-earth phosphor composition narrows green emission while preserving high intensity for better LCD filter matching and color gamut.
Carbon microparticles with gallium oxide prevent liquid metal corrosion while preserving conductivity in flexible electrodes for fast, stable sensing.
Composition-tuned Ag-In-Ga-S-Se quantum dots narrow fluorescence FWHM while maintaining high quantum yield without cadmium.
Vacuum heating with added indium converts indium oxide to volatile In2O, enabling clean separation from tin oxide in ITO waste targets.
A tailored indium ligand structure improves precursor thermal stability in ALD/CVD, enabling high-quality thin films with low residual carbon.
Ultrasound drives γ-Ga2O3 nanomaterial synthesis at ambient temperature and pressure, improving yield, purity, and scale-up potential.
The case controls Ag-In-Ga-S-Se composition and particle size to produce Cd-free quantum dots with FWHM ≤45 nm and quantum yield ≥35%.
Mixed-solvent synthesis produces metal oxide fine particles that transmit visible light while absorbing infrared light for heat-shielding films.
This case addresses weak 1000–1700 nm LED conversion with Ni2+/Cr3+-doped spinel phosphors for compact IR sources.
See how dense In-Y-Ga-Al oxide targets support uniform films with higher mobility and improved CVD stability.
Neopolyol additives modify crystal growth kinetics to increase aluminum hydroxide particle size without reducing precipitation yield.
Segmented zinc-thiol reaction controls quantum dot size to resolve low efficiency bottlenecks in electroluminescent devices.