Perovskites are promising materials for solar cells. A layer of dipolar molecules at the perovskite surface improves the efficiency of these devices.
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Ionic liquids slow perovskite degradation: Solar cells retain 90% performance at 90°C
Solar cells, devices that can generate electricity from sunlight, are already helping to reduce fossil fuel emissions in many ...
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The quiet experiment that changed solar power: First solid-state solar cell based on a perovskite semiconductor
Long before perovskite solar cells began smashing efficiency records and transforming the future of clean energy, their ...
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 ...
Scientists create perovskite film semiconductors at room temperature using lasers, which is a revolution for chips and solar ...
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 ...
An innovative hybrid solar device that combines a PV panel and energy storage has achieved record levels of energy storage efficiency for such a device. And unlike conventional batteries, the ...
A new method could make perovskite solar cells last longer and work better using special liquids. Could this be the key to ...
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New interface engineering strategy developed for efficient and stable back-contact solar cells
As the demand for renewable energy grows, scientists are developing new types of solar cells that are both highly efficient ...
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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 ...
Physical reservoir computing (PRC) utilizing synaptic devices shows significant promise for edge AI. Researchers from the Tokyo University of Science have introduced a novel self-powered ...
Silicon heterojunction solar cells combine crystalline silicon substrates with thin amorphous silicon layers in order to harness the complementary benefits of both materials. The crystalline substrate ...
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