Subscribe free to our newsletters via your
. Military Space News .




SOLAR DAILY
Ben-Gurion University develops side-illuminated ultra-efficient solar cell designs
by Staff Writers
Beer-Sheva, Israel (SPX) Nov 09, 2012


The new cell architecture (above) developed at the David Ben-Gurion National Solar Research Center at Ben-Gurion University of the Negev can exceed an ultra-efficient 40 percent conversion efficiency with intensities equal to 10,000 suns. When irradiated from the side, it generates solar conversion efficiencies that rival, and may eventually surpass, the most ultra-efficient photovolataics. This diagram is a schematic drawing of a 3-tier 6-terminal MBVJ solar cell. The number of tiers/materials is a design variable, and both the width (sub-cell dimension along the x-axis) and depth (sub-cell dimension along the z-axis) of each vertical junction need to be optimized. Credit: Ben-Gurion University of the Negev

Researchers at Ben-Gurion University of the Negev (BGU) have developed a radically new design for a concentrator solar cell that, when irradiated from the side, generates solar conversion efficiencies which rival, and may eventually surpass, the most ultra-efficient photovoltaics.

The new cell architecture developed at the David Ben-Gurion National Solar Research Center at BGU can exceed an ultra-efficient 40 percent conversion efficiency with intensities equal to 10,000 suns.

"Typically a concentrator solar cell comprises interdependent stacked materials connected in series, with significant associated fabrication difficulties and efficiency limitations," explains Prof. Jeffrey Gordon, a member of the Department of Solar Energy and Environmental Physics at BGU's Jacob Blaustein Institutes for Desert Research.

"Our new designs for concentrator photovoltaic cells comprise multiple tiers of semiconductor materials that are totally independent, and overcome numerous challenges in compiling the elements of even the most efficient solar cells," he says.

The BGU invention also demonstrates the distinctly new possibility of exploiting common materials, such as silicon, previously deemed unsuitable under highly concentrated solar radiation. Tailoring the cells to edge (side) illumination reduces the cell internal resistance to negligible levels.

This increases the solar concentration levels at which cell efficiency peaks to up to 10,000 times ambient solar beam radiation, which is significantly higher than ever before.

"Our future depends on the development of alternative energies, and BGU is leading the way in this field," explains Doron Krakow, executive vice president of American Associates, Ben- Gurion University of the Negev (AABGU).

"Prof. Gordon and his colleagues in BGU's Energy Initiative continue to bring new innovations that will impact our world for the better."

.


Related Links
American Associates, Ben-Gurion University of the Negev
All About Solar Energy at SolarDaily.com






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








SOLAR DAILY
EU probes subsidies for Chinese solar panel makers
Brussels (AFP) Nov 08, 2012
The European Commission opened a fresh probe into Chinese solar panel makers on Thursday, raising the heat in the latest tit-for-tat dispute between China and its Western trading partners. The Commission said it had "launched an anti-subsidy ... investigation into imports of solar panels and their key components" made in China after industry lobby group EU ProSun charged Beijing was giving i ... read more


SOLAR DAILY
Turkey discusses Patriot deployment with NATO

Qatar, UAE request $7.6 bn in missile defense: US

Israel 'success' in new missile defence test

Russia's space forces launch missile shield rocket

SOLAR DAILY
Russian FM says Syria rebels have 50 Stingers

Raytheon's Excalibur Ib demonstrates accuracy during flight tests

Syria rebels have US-made Stinger missiles: Russia

New TOW missile achieves 100th direct hit in latest testing

SOLAR DAILY
Iranian jets fired on US drone in Gulf: Pentagon

Sagetech, Arcturus Demonstrate Joint Manned, Unmanned Aircraft Operations using COTS NextGen ADS-B Tracking

Guided mortar rounds fired from small UAV

Japan to develop missile-detecting drone: report

SOLAR DAILY
Raytheon BBN Technologies' WNaN next generation network software selected for NIE 13.1 experiment

Raytheon announces Small Format Guard to secure data transfer for mobile and tactical forces

Pentagon to end exclusive deal with RIM's Blackberry

Space Systems Loral Selected by USAF to Develop Next Gen Protected Military Satellite Communications

SOLAR DAILY
Northrop Grumman and ITT Exelis Partner for U.S. Navy's Next Generation Jammer

Lockheed Martin Wins Contract to Enhance Combat Vehicle

Brazil's armored personnel carrier on way

Elbit To Supply Brazil Remote Controlled Weapon Stations

SOLAR DAILY
Putin fires defence minister in corruption scandal

Cameron in Saudi as Britain secures defence deal

U.K.'s BAE pins sales hopes on grumpy gulf

British PM in gulf to boost arms sales

SOLAR DAILY
Pentagon chief to visit Australia, Thailand and Cambodia

Battle-hardened Obama makes history once again

China's enigmatic 'princeling' Xi takes top spot

China says key Communist congress to last 7 days

SOLAR DAILY
Low-resistance connections facilitate multi-walled carbon nanotubes for interconnects

New discovery shows promise in future speed of synthesizing high-demand nanomaterials

Graphene Mini-Lab

Strengthening fragile forests of carbon nanotubes for new MEMS applications




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement