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The 130% solar cell: how a 'spin-flip' quantum trick produced more energy carriers than photons absorbed
A single photon goes in. Roughly 1.3 usable energy carriers come out. That is the result reported in May 2026 by a team at ...
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Fixing solar's weak spot: Why a tiny defect could be a big problem for perovskite cells
A recent study provides evidence to help solve one of the key hurdles to large-scale manufacture of next-generation perovskite solar cells. Subscribe to our newsletter for the latest sci-tech news ...
A research team at the Helmholtz-Zentrum Hereon has demonstrated how a classic technique can be repurposed to measure the ...
A new study has revealed a surprisingly simple way to improve one of the biggest weaknesses of next-generation solar cells.
An international research team has observed a significant increase in series resistance in LECO-treated TOPCon solar cells after temperature and bias treatment. The scientists said they now need to ...
According to Qcells, notice letters recipients are infringing on its laser-enhanced contact optimisation (LECO) technology. Image: QCells. Korean-owned solar manufacturer Hanwha Qcells has issued ...
Researchers from the Korea Advanced Institute of Science and Technology (KAIST) and Yonsei University have fabricated a high-efficiency and high-stability organic-inorganic hybrid solar cell. The ...
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 ...
A collaboration between a team led by RASEI Fellow Mike McGehee at the University of Colorado Boulder and scientists at the National Renewable Energy Laboratory (NREL), just published in the ...
Redirecting to: https://www.colorado.edu/rasei/2025/09/15/fixing-solars-weak-spot-why-tiny-defect-could-be-big-problem-perovskite-cells ...
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