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Until recently, most studies on subgap states focused on amorphous IGZO, as sufficiently large single-crystal IGZO (sc-IGZO) ...
A new palladium-loaded amorphous InGaZnOx (a-IGZO) catalyst achieved over 91% selectivity when converting carbon dioxide to ...
6don MSN
Many displays found in smartphones and televisions rely on thin-film transistors (TFTs) made from indium gallium zinc oxide ...
2d
Interesting Engineering on MSNA clever glass trick fixes the decade-old photonic crystal laser problemEngineers have developed the first room-temperature, eye-safe, photopumped PCSEL by embedding silicon dioxide into photonic crystal layer.
13d
Tech Xplore on MSNTernary Alloy Films Revolutionize Low-Power MemoryN thin films with record-high scandium levels, with exciting potential for ultra-low-power memory devices, as reported by ...
Insights into atomic-scale defects may enable next-generation thin-film transistors for smartphones, televisions, and ...
Quantum sensors have become important tools in low-energy particle physics. Michael Doser explores opportunities to exploit ...
UChicago researchers created a ‘quantum-inspired’ revolution in microelectronics, storing classical computer memory in ...
7d
Tech Xplore on MSNStudy quantifies how cellular structures enhance strength in 3D-printed metalsA research group conducted quantitative individual analysis on the contribution to the strength of the micrometer-scale ...
Crystal engineering is the design of molecular solids with specific physical and chemical properties through an understanding and manipulation of intermolecular interactions.
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