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6 FAQs about [Solar fiber power generation efficiency chart]
How many new solar cell efficiency tables are there?
Image: Fraunhofer ISE The international research group led by Professor Martin Green from the University of New South Wales in Australia has published Version 63 of the “ solar cell efficiency tables ” in Progress in Photovoltaics. The scientists said they have added six new results to the new tables since June.
Who created the solar energy efficiencies chart?
Kopidakis took over responsibility for the chart three years ago. The originator of the chart, Larry Kazmerski, began measuring and charting the efficiencies of solar cells in 1980 when NREL was known as the Solar Energy Research Institute.
What is the best research-cell efficiency chart?
The Best Research-Cell Efficiency Chart stands out as being among the most-visited page on NREL’s website. The chart contains information on a range of different photovoltaic (PV) cell technologies as they have been discovered and developed over the last 50 years.
How efficient are hybrid solar cells?
“The format of the chart will soon change to include hybrid tandems.” The chart now includes the 33.9% world record efficiency achieved in November by Chinese manufacturer Longi for a perovskite-silicon tandem solar cell and the 27.09% efficiency achieved by the same company for a heterojunction back contact solar cell.
When did NREL start measuring solar energy efficiencies?
The originator of the chart, Larry Kazmerski, began measuring and charting the efficiencies of solar cells in 1980 when NREL was known as the Solar Energy Research Institute. Before then, the measurements were the responsibility of NASA, which used the technology to power satellites and other spacefaring craft.
How efficient is a multijunction solar cell?
The fifth result added to the tables is the 36.1% efficiency that Germany's Fraunhofer Institute for Solar Energy Systems (Fraunhofer ISE) and Dutch research institute AMOLF achieved in September for a multijunction solar cell based on silicon and III-V semiconductors such as gallium indium phosphide (GaInP) and gallium arsenide (GaAs).