Custom optical bandpass filters raise solar energy efficiency to 40%

The world-beating efficiency was achieved in outdoor tests in Sydney, Australia before being independently confirmed by the National Renewable Energy Laboratory (NREL) at their outdoor test facility in the USA.

The work was funded by the Australian Renewable Energy Agency (ARENA) and supported by the Australia–US Institute for Advanced Photovoltaics (AUSIAPV)

“This is the highest efficiency ever reported for sunlight conversion into electricity,” claimed UNSW Scientia Professor and Director of the Australian Centre for Advanced Photovoltaics (ACAP) Professor Martin Green.

“We used commercial solar cells, but in a new way, so these efficiency improvements are readily accessible to the solar industry,” explained Dr Mark Keevers, the UNSW solar scientist who managed the project.

The 40% efficiency milestone is the latest in a long line of achievements by UNSW solar researchers spanning four decades. These include the first photovoltaic system to convert sunlight to electricity with over 20% efficiency in 1989, with the new result doubling this performance.

“The new results are based on the use of focused sunlight, and are particularly relevant to photovoltaic power towers being developed in Australia,” Professor Green said.

Power towers are being developed by Australian company, RayGen Resources, which provided design and technical support for the high efficiency prototype. Another partner in the research was Spectrolab, a US–based company that provided some of the cells used in the project.

A key part of the prototype’s design is the use of a custom optical bandpass filter to capture sunlight that is normally wasted by commercial solar cells on towers and convert it to electricity at a higher efficiency than the solar cells themselves ever could.

Such filters reflect particular wavelengths of light while transmitting others.

Source: http://www.electronics-eetimes.com/en/custom-optical-bandpass-filters-raise-solar-energy-efficiency-to-40.html?cmp_id=7&news_id=222923238&vID=209

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