Techno-Science.net on MSN
⚡ +30% efficiency for thin-film solar cells!
Why do tin sulfide solar cells, a promising and eco-friendly material, struggle to reach their full theoretical potential?
WIRED spoke with DeepMind’s Pushmeet Kohli about the recent past—and promising future—of the Nobel Prize-winning research ...
The introduction of a nanometric germanium oxide layer drastically improved device performance and stability. As the global demand for clean energy accelerates, solar power continues to attract ...
A new technology has been developed that overcomes the limitations of the ultra-high-temperature fabrication process for ‘Protonic Ceramic Electrochemical Cells (PCECs)’, which use solid ceramic ...
The efficieny result represents one of the best performances ever achieved for this kind of thin-film solar cell to date. The device was fabricated with a rear contact interface that reportedly ...
Novel Delivery System for High-Molecular-Weight Collagen Advances Anti-Aging Science at the Society of Cosmetic Chemists' ...
For numerous fundamental processes of life, the formation of certain protein patterns is essential. Protein pattern formation controlled by molecular switches is—like many processes in nature—far ...
Gene Holdings Inc. rises on 62% CR rate in Phase 2 NMIBC trial. Click to learn about ENGN and its gene delivery tech, market ...
As the world urgently seeks clean energy solutions, solar power stands out for its abundance and scalability compared to other renewable energy sources. In recent years, researchers have turned to ...
Tech Xplore on MSN
Confined crystallization strategy improves spray-coated perovskite device performance
Metal halide perovskites are promising for next-generation high-efficiency photovoltaic and optoelectronic devices due to ...
Water behaves 100,000 times better electrically in ultrathin channels, transforming chemistry in cells and advanced materials ...
As the world urgently seeks clean energy solutions, solar power stands out for its abundance and scalability compared to ...
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