Hydrogen-Bonded Cations Push Perovskite Solar Cells Toward 26% Efficiency and Lasting Stability
Researchers built 2D perovskite spacer cations in situ from formamidinium and n-hexyl phosphonic acid, achieving 26.32% efficiency and retaining over ...
Researchers built 2D perovskite spacer cations in situ from formamidinium and n-hexyl phosphonic acid, achieving 26.32% efficiency and retaining over ...
A dithiocarbamate-functionalized cellulose sorbent developed by Japanese researchers recovers more than 99 percent of lead from organic solvent effluents, overcoming ...
South Korean researchers show that atomically deposited tin dioxide harms perovskite solar cells when touching the absorber directly, but a ...
NTU Singapore's CRIMSON-1 satellite, its fourteenth orbital mission, is testing locally developed perovskite solar cells and onboard AI image processing ...
A new comparative review finds that engineering the nanoscale interfaces between perovskite absorbers and charge transport layers, from doped tin ...
Using density functional theory, researchers designed eight triphenylamine–benzothiophene donor molecules, with the best candidate predicted to reach 28 percent power ...
A new review argues that artificial intelligence has accelerated perovskite solar cell research locally but cannot deliver industrial deployment without ...
Researchers at HKUST have developed trans-interface engineering, using vertically aligned molecular nanolinks to stitch perovskite solar cell interfaces together, delivering ...
Chemists have engineered bulky Lewis acid and base pairs that evade mutual quenching to passivate both defect types in perovskite ...
A coordination-regulated nickel oxide deposition strategy enables certified 27.35% perovskite cell efficiency, 23.42% module efficiency and durable large-area operation.
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© 2025 Scienmag - Science Magazine