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Huasun achieves 25.26% efficiency for heterojunction solar cell

Huasun achieves 25.26% efficiency for heterojunction solar cell
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Wang Wenjing , Kostenloser Wertpapierhandel , Institute For Solar Energy Research In Hamelin , Solar Energy Research , Hamelin China Based , நிறுவனம் க்கு சூரிய ஆற்றல் ஆராய்ச்சி இல் ஹாமலின் , சூரிய ஆற்றல் ஆராய்ச்சி ,

LONGi Solar pushes n-type TOPCon cell to record 25.09% conversion efficiency


LONGi Solar pushes n-type TOPCon cell to record 25.09% conversion efficiency
LONGi Solar’s module shipments for 2020 reached a record 24.53GW. Image: LONGi Solar.
LONGi Solar has set a new record conversion efficiency for an n-type monocrystalline bifacial TOPCon cell of 25.09%.
The company said the achievement, independently verified by the Institute for Solar Energy Research in Hamelin, represents the first time that the efficiency of a TOPCon cell based on a commercial size silicon wafer has exceeded 25%. 
The announcement comes months after JinkoSolar set a conversion efficiency record of 24.90% for its N-type TOPCon monocrystalline silicon solar cell.
“We are aiming to promote continuous upgrading of the PV industry, achieving higher efficiency and more sustainability,” said Li Hua, vice president and head of the cell R&D center of LONGi Solar, adding: “Improving cell conversion efficiency is the main channel for PV technology development.” ....

Institute For Solar Energy Research In Hamelin , Solar Energy Research , நிறுவனம் க்கு சூரிய ஆற்றல் ஆராய்ச்சி இல் ஹாமலின் , சூரிய ஆற்றல் ஆராய்ச்சி ,

Transparent Nanolayers For More Solar Power: Silicon Solar Cells With More Than 26% Efficiency


Posted on April 23, 2021 | Views: 58
cwebb2021-04-22T20:11:05-07:00
by Forschungszentrum Juelich: Nanostructured material and a new cell design pave the way for the production of silicon solar cells with more than 26 percent efficiency…
There is no cheaper way to generate electricity today than with the sun. Power plants are currently being built in sunny locations that will supply solar electricity for less than two cents per kilowatt hour. Solar cells available on the market based on crystalline silicon make this possible with efficiencies of up to 23 percent. Therefore they hold a global market share of around 95 percent. With even higher efficiencies of more than 26 percent, costs could fall further. An international working group led by photovoltaics researchers from Forschungszentrum Jülich now plan to reach this goal with a nanostructured, transparent material for the front of solar cells and a sophisticated design. The scientists report on their su ....

Zuid Holland , Novosibirskaya Oblast , Forschungszentrum Juelich , Kutateladze Institute Of Thermophysics , Ernst Ruska Center , Nature Energy , Institute For Energy , Institute For Solar Energy Research In Hamelin , University Of Duisburg , Aachen University , Climate Research , Sun Yat Sen University , Nanolayer Solar Cell Layer Sequence , Transparent Passivating Contact , Kaining Ding , Solar Energy Research , Electron Microscopy , Technical Universities , Universidad San Francisco De Quito , Kutateladze Institute , Sci Tech , இயற்கை ஆற்றல் , நிறுவனம் க்கு ஆற்றல் , நிறுவனம் க்கு சூரிய ஆற்றல் ஆராய்ச்சி இல் ஹாமலின் , ஆச்சென் பல்கலைக்கழகம் , காலநிலை ஆராய்ச்சி ,