Trina Solar says new certified results in perovskite-crystalline silicon tandem cells and modules demonstrate progress toward industrial-scale next-generation PV.
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Quantum 'hybrid excitons' could turbocharge solar power
Solar power is already the cheapest way to generate large amounts of clean electricity, yet conventional panels still waste a ...
Researchers from the National University of Singapore (NUS) have developed a vapour-deposition method that they say ...
National University of Singapore scientists claim that vapor-deposited perovskite-silicon tandem solar cells built on industrial silicon wafers achieve both high efficiency and long-term thermal ...
The research group led by Professor Martin Green has not published yet Version 67 of the solar cell efficiency tables, due to ...
Solar cells, devices that can generate electricity from sunlight, are already helping to reduce fossil fuel emissions in many ...
Abstract: This study presents the development and validation of a dielectrophoresis (DEP)-based microfluidic device for micromechanical phenotyping of cancer cells. Using Jurkat cells as a model, we ...
First successful use of vapor deposition on industrial silicon wafers delivers unprecedented durability in perovskite-silicon tandem solar cells.
Researchers from the National University of Singapore (NUS) have developed a groundbreaking vapour-deposition method that dramatically improves the ...
As the demand for renewable energy grows, scientists are developing new types of solar cells that are both highly efficient ...
Cambridge researchers have developed a far more stable perovskite structure, stacking ultra-thin layers at atomic precision ...
South Korean researchers have developed a novel bilayer tin oxide electron transport layer for improving efficiency and ...
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