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Physicists develop approach to increase performance of solar energy
by Staff Writers
Norman OK (SPX) Apr 22, 2020

Stock image of a large scale solar farm.

Experimental condensed matter physicists in the Department of Physics at the University of Oklahoma have developed an approach to circumvent a major loss process that currently limits the efficiency of commercial solar cells.

Solar cells convert the sun's energy into electricity and are the main component of solar panels and many types of electrical devices as broad-ranging as satellites and calculators.

Members of the Photovoltaic Materials and Devices Group, led by OU associate professor in the Homer L. Dodge Department of Physics and Astronomy, Ian Sellers, along with theorists at Arizona State University, led by David K. Ferry, have demonstrated a breakthrough toward the development of a hot carrier solar cell.

A hot carrier solar cell is a device that would increase the efficiency of solar cells by more than 20%, which Sellers said would be a significant breakthrough for solar energy.

"Although this device has been the source of a considerable amount of research over the last 10 to 15 years, the realization of a practical solution has thus far eluded researchers with proof-of-principle demonstrations only presented under unrealistic conditions or in materials and structures not relevant for solar cell operation," said Sellers.

Sellers says this new approach, recently published in the journal Nature Energy, demonstrates "significant progress in the realization of the hot carrier solar cell and the potential for ultra-high-efficiency single-junction semiconductor devices, which would revolutionize the field of photovoltaics and renewable energy generation."

Research paper


Related Links
University Of Oklahoma
All About Solar Energy at SolarDaily.com


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SOLAR DAILY
New discovery settles long-standing debate about photovoltaic materials
Ames, IA (SPX) Apr 20, 2020
Scientists have theorized that organometallic halide perovskites-- a class of light harvesting "wonder" materials for applications in solar cells and quantum electronics-- are so promising due to an unseen yet highly controversial mechanism called the Rashba effect. Scientists at the U.S. Department of Energy's Ames Laboratory have now experimentally proven the existence of the effect in bulk perovskites, using short microwave bursts of light to both produce and then record a rhythm, much like mus ... read more

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