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




SOLAR DAILY
Solar cell degradation observed directly for the first time
by Staff Writers
Hamburg, Germany (SPX) Dec 11, 2013


Schematic representation of the internal structure of the active layer of the polymer solar cell: The orange areas represent the active domains, where light is absorbed and charge carriers are released. Illustration: TU Munchen.

With the help of DESY's X-ray light source PETRA III, researchers of Technische Universitat Munchen have, for the first time, watched organic solar cells degrade in real time. This work could open new approaches to increasing the stability of this highly promising type of solar cell. The team headed by Prof. Peter Muller-Buschbaum from the Technische Universitat Munchen (Technical University of Munich) present their observations in this week's issue of the scientific journal Advanced Materials (Nr. 46, 10 December).

Organic solar cells, especially those based on polymers are inexpensive to produce on a large scale. Thanks to their physical flexibility, they can open up new applications of photovoltaics not possible today. Moreover, they can convert light into electricity at an efficiency of more than ten per cent and could contribute significantly to a large-scale power supply based on renewable sources. However, the efficiency of organic cells still rapidly declines and they have a shorter service life than conventional silicon cells.

At the P03 measuring station of DESY's light source PETRA III, scientists have made the first live observations of the degradation of organic solar cells in operation. To do this, they lit a sample polymer solar cell using a solar simulator, which emits light that matches the spectrum and intensity of sunlight and recorded the electrical characteristics of the cell over time.

At intervals ranging from several minutes to as much as one hour, the researchers also looked inside the solar cell using the sharply focused X-ray beam from PETRA III. In this way they were able to watch how the interior structure of the active layer of the solar cell changed in the course of seven hours, while the efficiency of the cell decreased by around 25 per cent.

Electricity is generated in the active layer at what is known as active domains in these solar cells. Here, light is absorbed and charge carriers are released. The diameter of these active domains increased by 17 per cent during the study, from about 70 to more than 80 nanometres (millionths of a millimeter). At the same time, the mean distance between them increased by 19 per cent from 310 nanometres to around 370 nanometres, as the X-ray measurements showed.

"This suggests that during operation small sites disappear permanently in favour of larger ones," explains first author Christoph Schaffer, who is a PhD student in Muller-Buschbaum's group. "Although the domains grow, they also recede from each other, this means that their total active area shrinks. This can precisely explain the observed decline in efficiency."

"The examination explained the mechanism of degradation for the first time. It's a first step," says co-author Dr. Stephan Roth, the DESY scientist with responsibility for measuring station P03.

"The next step involves attempting to reduce or control this growth in a targeted manner, for example, through the addition of appropriate substances. Polymer solar cells could conceivably be produced with an internal structure in which the active sites grow to their optimal size during the first hours of operation," adds Muller-Buschbaum. "The consequence of such measures could be that industrially produced cells finally cross the economically crucial efficiency threshold also for long-term operation," emphasises Roth.

Deutsches Elektronen-Synchrotron DESY is the leading German accelerator centre and one of the leading in the world. DESY is a member of the Helmholtz Association and receives its funding from the German Federal Ministry of Education and Research (BMBF) (90 percent) and the German federal states of Hamburg and Brandenburg (10 percent).

At its locations in Hamburg and Zeuthen near Berlin, DESY develops, builds and operates large particle accelerators, and uses them to investigate the structure of matter. DESY's combination of photon science and particle physics is unique in Europe.

"A Direct Evidence of Morphological Degradation on a Nanometer Scale in Polymer Solar Cells"; Christoph J. Schaffer, Claudia M. Palumbiny, Martin A. Niedermeier, Christian Jendrzejewski, Gonzalo Santoro, Stephan V. Roth, Peter Muller-Buschbaum; Advanced Materials, Vol. 25, Nr. 46, S. 6760-6764, 10 December 2013; DOI: 110.1002/adma.201302854

.


Related Links
Deutsches Elektronen-Synchrotron
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
Rooftop solar powers past new milestone
Canberra, Australia (SPX) Dec 10, 2013
More than 3 gigawatts of solar power has now been installed on Australian rooftops, which will produce enough energy over the next year to run Melbourne's entire train network for more than a decade, Clean Energy Council Chief Executive David Green said in an address to the Energy Efficiency Council's national conference today. Mr Green said official Clean Energy Regulator figures this wee ... read more


SOLAR DAILY
Iran nuclear accord means NATO missile defence unnecessary: Russia

IBCS Completes US Army Integrated Air and Missile Defense Demonstration

Patriot performance excels in PAC-3 test firing

Israel moves closer to missile defense shield

SOLAR DAILY
Turkey says no new bids to rival China missile offer

Kongsberg seals Penguin missile deal with New Zealand

US Navy deploys Standard Missile-6 for first time

Raytheon Delivers High-Speed Anti-Radiation Missile Control Units

SOLAR DAILY
Northrop starts production of Global Hawk UAS for NATO

Pentagon chief talks drones with Pakistan PM

Northrop Grumman Begins On-Time Production of First NATO Global Hawk

U.S. responding to Gulf states push for UAV systems

SOLAR DAILY
US Navy Accepts MUOS-2 Satellite, Ground Stations After On-Orbit Testing

Boeing Tests Validate Performance of FAB-T Satellite Communications Program

Intelsat General To Provide Satellite Services To US Marines

Manpack Radios in Arctic Connect with MUOS Satellites Orbiting Equator

SOLAR DAILY
Less than 90 days: how US will destroy Syria chemical weapons

Switzerland, Austria seek U.S. Foreign Military Sales deals

Fill out the form for your bomb: Pentagon

Much of Venezuela's Russian arms said to be faulty

SOLAR DAILY
EADS to cut 5,800 jobs in Europe in restructuring

Russia indicts former defence minister

U.S., Europeans battle for big Persian Gulf arms deals

Report: German auditors, EU probing procurement of helicopters

SOLAR DAILY
China seen as 'confident', 'belligerent': state media

CIA decorates two ex-agents, jailed in China for 20 years

S. Korea declares expanded air defence zone in disputed area

China 'regrets' S. Korea air zone expansion; Japan says no problem

SOLAR DAILY
Laser light at useful wavelengths from semiconductor nanowires

Stanford engineers show how to optimize carbon nanotube arrays for use in hot spots

Ultra-sensitive force sensing with a levitating nanoparticle

Graphene nanoribbons for 'reading' DNA




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