Tech Xplore on MSN
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 ...
Perovskites are promising materials for solar cells. A layer of dipolar molecules at the perovskite surface improves the ...
Tech Xplore on MSN
Vapor-deposition method delivers unprecedented durability in perovskite–silicon tandem solar cells
NUS researchers have developed a vapor-deposition method that dramatically improves the long-term and high-temperature stability of perovskite-silicon (Si) tandem solar cells. The findings were ...
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 ...
Researchers have developed a perovskite-organic tandem solar cell that achieves 26.4 percent efficiency. Unlike rigid silicon modules, the lightweight design can generate power on curved or flexible ...
Perovskite solar cells are a promising alternative to traditional silicon solar panels but have poor durability. Professor Ted Sargent, Research associate professor Bin Chen, Postdoctoral fellows ...
Tech Xplore on MSN
Carbon nanotubes could power a new generation of flexible solar panels
Perovskite solar cells can be made not only more robust but also more efficient, scalable and cheaper to manufacture by ...
Ubiquitous Energy and Michigan State University researchers have created a fully transparent solar concentrator, which could turn any window or sheet of glass (like your smartphone's screen) into a ...
A research team in Italy has tested the performance of semitransparent wide-bandgap perovskite solar cells in underwater (UW) environments and has found that, at a 0.5–1 cm depth, the devices achieve ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results