Perovskites are promising materials for solar cells. A layer of dipolar molecules at the perovskite surface improves the ...
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 team at Fraunhofer ISE has created new imaging methods to measure losses in individual sub-cells of multi-junction solar cells based on perovskite-silicon and perovskite-perovskite-silicon ...
Tech Xplore on MSN
Molecular fine-tuning boosts tandem solar cell efficiency to 31.4%
Perovskite-silicon tandem solar cells are considered a key technology for photovoltaics. Because of their design, they use ...
The Cool Down on MSN
Scientists develop revolutionary technology that could transform solar panels: 'Opens new possibilities'
"Efficient and stable." Scientists develop revolutionary technology that could transform solar panels: 'Opens new ...
An Oxford researcher has found that transparent conducting electrodes can reduce perovskite–silicon tandem solar cell ...
Method could help explain how transport properties emerge from quantum effects in materials like solar cells and ...
Tech Xplore on MSN
Long-standing limitation in thin-film solar cells resolved with nanometric germanium oxide layer
As the world urgently seeks clean energy solutions, solar power stands out for its abundance and scalability compared to ...
Radiation testing suggests that solar cells made from carbon-based, or organic, materials could outperform conventional silicon and gallium arsenide for generating electricity in the final frontier, a ...
Nanotechnology enables the use of materials with unique optical, electrical, and thermal properties. These materials can be engineered to absorb sunlight more efficiently, reduce energy loss, and ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results