Tech Xplore on MSN
Perovskite solar cells maintain 95% of power conversion efficiency after 1,100 hours at 85°C with new molecular coating
Scientists have found a way to make perovskite solar cells not only highly efficient but also remarkably stable, addressing ...
Scientists have developed a new protective coating that significantly extends the life of perovskite solar cells, making them more practical for applications outside the lab. Northwestern University ...
Interesting Engineering on MSN
Game-changer: UK scientists build perovskite solar cells that retain 95% performance
Interestingly, the ‘game-changer’ perovskite solar cells achieved a power conversion efficiency of 25.4% in the testing.
Morning Overview on MSN
Breakthrough could make solar panels more efficient, scientists say
Solar power is already one of the fastest growing sources of electricity on the planet, yet scientists say it is still only ...
Australia is moving forward with plans for a massive solar project, with energy production expected to begin in 2030 - Copyright AFP Sebastien SALOM-GOMIS Australia ...
Researchers funded by the US Navy have developed a novel coating for underwater solar cells that prevents biofouling while preserving visible light transmission. Biofouling, the attachment and growth ...
Researchers from the School of Engineering at The Hong Kong University of Science and Technology (HKUST) have developed a ...
In a recent article published in Sustainability, researchers from Pakistan demonstrated that zinc oxide (ZnO), with its high band gap energy and excellent electro-optical properties, can enhance the ...
The additive introduced into the solution for preparing the photoactive layer enhances Marangoni flow, thereby offsetting capillary flow caused by changes in the substrate’s surface energy due to ...
Researchers overcome long-standing instability issues using molecular coatings, delivering lightweight, flexible and ...
Solyco is developing a new low-temperature technology for the interconnection of solar cells. It consists of a round copper core with a diameter of 280 μm that is covered by a very thin layer of ...
With their latest work, Crozier and his colleagues demonstrated what could be a promising solution. Making fine-precision measurements on single nanowires coated with an amorphous silicon layer, the ...
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