A catalytic system uses exothermic dissolution to initiate metal borohydride hydrolysis for hydrogen generation.
Tapered optical fiber spikes generate evanescent waves to measure surface distances via light intensity changes.
A memory device merges magnetic tunnel junction and conductive regions into a single shared layer structure to simplify manufacturing steps.
Replacing gold with a copper catalyst lowers synthesis costs and reduces environmental impact while maintaining semiconductor purity.
Applying an anneal pulse after programming accelerates structural relaxation in phase change memory, reducing drift in reset resistance and threshold voltage.
Combines photolithography with self-assembling copolymer lithography to create grid-pattern masks.
A microphotonic light emitter measures its own surface temperature via reverse current detection.
A quantum dot unit converts light to narrow wavelengths within a liquid crystal display backlight module.
Disposable printed metal nanoparticle masks eliminate expensive photomask fabrication costs while maintaining precise alignment and patterning capabilities.
A scanning probe microscopy method uses minimal survey scans to locate sample features rapidly.
Transparent insulating barriers between quantum dot layers prevent high-energy exciton transfer, reducing power consumption and maintaining color stability.
Electrically conductive polymeric film bonds radiation detector anodes to printed circuit boards using low compressive forces.
Anti-tunneling layers isolate active areas in a single chip, reducing surplus voltage and heat generation for full-color displays.
Plasma etching forms micro-nano structures on porous media, resolving flooding bottlenecks in fuel cell gas diffusion layers.
Separate anchoring agents enable mixed polymer brushes, avoiding the 50/50 ratio limits of split initiators.
Integrating zincblende quantum dots into the RGB color filter layer eliminates cross-talk interference while achieving 100% BT.2020 color gamut coverage.