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




SOLAR DAILY
Magnetic fingerprints of interface defects in silicon solar cells detected
by Staff Writers
Berlin, Germany (SPX) Apr 02, 2013


Picture: HZB / University Paderborn.

Using a highly sensitive method of measurement, HZB physicists have managed to localize defects in amorphous/crystalline silicon heterojunction solar cells. Now, for the first time ever, using computer simulations at Paderborn University, the scientists were able to determine the defects' exact locations and assign them to certain structures within the interface between the amorphous and crystalline phases.

In theory, silicon-based solar cells are capable of converting up to 30 percent of sunlight to electricity - although, in reality, the different kinds of loss mechanisms ensure that even under ideal lab conditions it does not exceed 25 %. Advanced heterojunction cells shall affront this problem: On top of the wafer's surface, at temperatures below 200 C, a layer of 10 nanometer disordered (amorphous) silicon is deposited.

This thin film is managing to saturate to a large extent the interface defects and to conduct charge carriers out of the cell. Heterojunction solar cells have already high efficiency factors up to 24,7 % - even in industrial scale. However, scientists had until now only a rough understanding of the processes at the remaining interface defects.

Now, physicists at HZB's Institute for Silicon Photovoltaics have figured out a rather clever way for detecting the remaining defects and characterizing their electronic structure.

"If electrons get deposited on these defects, we are able to use their spin, that is, their small magnetic moment, as a probe to study them," Dr. Alexander Schnegg explains. With the help of EDMR, electrically detected magnetic resonance, an ultrasensitive method of measurement, they were able to determine the local defects' structure by detecting their magnetic fingerprint in the photo current of the solar cell under a magnetic field and microwave radiation.

Theoretical physicists of Paderborn University could compare these results with quantum chemical computer simulations, thus obtaining information about the defects' positions within the layers and the processes they are involved to decrease the cells' efficiency.

"We basically found two distinct families of defects", says Dr. Uwe Gerstmann from Paderborn University, who collaborates with the HZB Team in a program sponsored by Deutsche Forschungsgemeinschaft (DFG priority program 1601).

"Whereas in the first one, the defects are rather weakly localized within the amorphous layer, a second family of defects is found directly at the interface, but in the crystalline silicon."

For the first time ever the scientists have succeeded at directly detecting and characterizing processes with atomic resolution that compromise these solar cells' high efficiency. The cells were manufactured and measured at the HZB; the numerical methods were developed at Paderborn University. "We can now apply these findings to other types of solar cells in order to optimize them further and to decrease production costs", says Schnegg.

This work is published on March 27, 2013, in Phys. Rev. Letters at the following doi: 10.1103/PhysRevLett.110.136803

.


Related Links
HZB
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
New Type of Solar Structure Cools Buildings in Full Sunlight
Stanford CA (SPX) Apr 01, 2013
Homes and buildings chilled without air conditioners. Car interiors that don't heat up in the summer sun. Tapping the frigid expanses of outer space to cool the planet. Science fiction, you say? Well, maybe not any more. A team of researchers at Stanford has designed an entirely new form of cooling structure that cools even when the sun is shining. Such a structure could vastly improve the ... read more


SOLAR DAILY
Future Looks Bright for Private US Space Ventures

Europe's next ATV resupply spacecraft enters final preparatio?ns for its Ariane 5 launch

ILS Proton Launches Satmex 8 Satellite for Satmex

When quality counts: Arianespace reaffirms its North American market presence

SOLAR DAILY
SwRI study finds liquid water flowing above and below frozen Alaskan sand dunes, hints of a wetter Mars

Opportunity Moves Into Place for Quiet Period of Operations

Measuring Mars: The MAVEN Magnetometer

Opportunity Heads to Matijevic Hill

SOLAR DAILY
Lunar cycle determines hunting behaviour of nocturnal gulls

Ultraviolet spectrograph observes mercury and hydrogen in GRAIL impact plumes

NASA's LRO Sees GRAIL's Explosive Farewell

Amazon's Bezos recovers Apollo 11 engines

SOLAR DAILY
'Vulcan' wins Pluto moon name vote

Public to vote on names for Pluto moons

The PI's Perspective: The Seven-Year Itch

New Horizons Gets a New Year's Workout

SOLAR DAILY
The Great Exoplanet Debate

Astronomers Detect Water in Atmosphere of Distant Planet

Distant planetary system is a super-sized solar system

Water signature in distant planet shows clues to its formation

SOLAR DAILY
XCOR Driving Rocket Science Forward With Lynx Suborbital Vehicle

ATK Successfully Ground Tests New CASTOR 30XL Upper Stage Solid Rocket Motor

NASA Turns Up the Heat on Construction of the Space Launch System

SpaceX's Merlin 1D Engine Achieves Flight Qualification

SOLAR DAILY
Shenzhou 10 sent to launch site

China's Next Women Astronauts

Shenzhou 10 - Next Stop: Jiuquan

China's fourth space launch center to be in use in two years

SOLAR DAILY
Dawn remains in silent pursuit of dwarf planet Ceres

NASA's Swift Sizes Up Comet ISON

NASA Scientists Find Moon, Asteroids Share History

Goldstone Radar Snags Images of Asteroid 2013 ET




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