2013-05-30

Organic polymers show sunny potential: Groundwork laid for block copolymer solar cells

Organic polymers show sunny potential: Groundwork laid for block copolymer solar cells

The photovoltaic devices created in a project led by Rice chemical engineer Rafael Verduzco and Penn State chemical engineer Enrique Gomez are based on block copolymers, self-assembling organic materials that arrange themselves into distinct layers. They easily outperform other cells with polymer compounds as active elements.

The discovery is detailed online in the American Chemical Society journal Nano Letters.

While commercial, silicon-based solar cells turn about 20 percent of sunlight into electricity and experimental units top 25 percent, there's been an undercurrent of research into polymer-based cells that could greatly reduce the cost of solar energy, Verduzco said. The Rice/Penn State cells reach about 3 percent efficiency, but that's surprisingly better than other labs have achieved using polymer compounds.

"You need two components in a solar cell: one to carry (negative) electrons, the other to carry positive charges," Verduzco said. The imbalance between the two prompted by the input of energy -- sunlight -- creates useful current.

Since the mid-1980s, researchers have experimented with stacking or mixing polymer components with limited success, Verduzco said. Later polymer/fullerene mixtures topped 10 percent efficiency, but the fullerenes -- in this case, enhanced C-60 buckyballs -- are difficult to work with, he said.

The Rice lab discovered a block copolymer -- P3HT-b-PFTBT -- that separates into bands that are about 16 nanometers wide. More interesting to the researchers was the polymers' natural tendency to form bands perpendicular to the glass. The copolymer was created in the presence of a glass/indium tin oxide (ITO) top layer at a modest 165 degrees Celsius.

With a layer of aluminum on the other side of the device constructed by the Penn State team, the polymer bands stretched from the top to bottom electrodes and provided a clear path for electrons to flow.

"On paper, block copolymers are excellent candidates for organic solar cells, but no one has been able to get very good photovoltaic performance using block copolymers," Verduzco said. "We didn't give up on the idea of block copolymers because there's really only been a handful of these types of solar cells previously tested. We thought getting good performance using block copolymers was possible if we designed the right materials and fabricated the solar cells under the right conditions."

Mysteries remain, he said. "It's not clear why the copolymer organizes itself perpendicular to the electrodes," he said. "Our hypothesis is that both polymers want to be in contact with the ITO-coated glass. We think that forces this orientation, though we haven't proven it yet."

He said the researchers want to experiment with other block copolymers and learn to control their structures to increase the solar cell's ability to capture photons and turn them into electricity. Once they have achieved higher performance from the cells, the team will look at long-term use.

"We'll focus on performance first, because if we can't get it high enough, there's no reason to address some of the other challenges like stability," Verduzco said. Encapsulating a solar cell to keep air and water from degrading it is easy, he said, but protecting it from ultraviolet degradation over time is hard. "You have to expose it to sunlight. That you can't avoid."

Co-authors of the paper are Rice graduate students Yen-Hao Lin and Kendall Smith; Penn State graduate student Changhe Guo and undergraduate Matthew Witman; Argonne National Laboratory researcher Joseph Strzalka; Lawrence Berkeley National Laboratory postdoctoral researcher Cheng Wang and staff scientist Alexander Hexemer; and Enrique Gomez, an assistant professor in the Penn State Department of Chemical Engineering. Verduzco is an assistant professor of chemical and biomolecular engineering.

The National Science Foundation, the Department of Energy, the Welch Foundation, the Shell Center for Sustainability and the Louis and Peaches Owen Family Foundation supported the research.


Welcome to SUV System Ltd!

SUV System Ltd is ISO 90012008 Certified electronics distributor with 10 years of experiences.

We have built up long term business relationship with about many companies which are stockers and authorized agents. we have a steady and reliable supply to meet customer's demands to the greatest extent .Confidently, we are able to lower your cost and support your business with our years of professional service.

SUV System Ltd is Electronic Components Distributor Supplies,Find Quality Electronic Components Supplies Products IC(Integrated Circuits),Connectors,Capacitor,Resistors,Diodes,Transistors,LED at Suvsystem.com. Sourcing Other Energy, Environment, Excess Inventory Products from Manufacturers and Suppliers at Suvsystem.com

Electronic Components distributor:http://www.suvsystem.com

Connectors Distributor:http://www.suvsystem.com/l/Connectors-1.html

IC Distributor:http://www.suvsystem.com/l/IC(Integrated-Circuits)-1.html

LED Distributor:http://www.suvsystem.com/l/LED-1.html

Capacitor Distributor:http://www.suvsystem.com/l/Capacitor-1.html

Transistor Distributor:http://www.suvsystem.com/l/Transistors-1.html

Resistor Distributor:http://www.suvsystem.com/l/Resistors-1.html

Diode Distributor:http://www.suvsystem.com/l/Diodes-1.html

SUV System Ltd insists on the managing faith ofsincereness,speciality,foresight, win-win,so we build up stable-relationship customers located all over the world, including the States, Europe, Argentina, UAE, Malaysia, Australia,and India etc

we are focus on the following fields,and hope we can help you.


CRCW08051M21FKEA CRCW08051R37FKEA CRCW08051R33FKEA CRCW08051R30JNTA CRCW08051R30JNEA CRCW08051R30FKEA CRCW08051R27FKEA CRCW08051R24FKEA CRCW08051R21FNEA CRCW08051R21FKTA CRCW08051R21FKEA CRCW08051R20JNTA CRCW08051R20JNEAIF CRCW08051R20JNEA CRCW08051R20FKEA CRCW08051R18FKEA CRCW08051R15FNEA CRCW08051R15FKTA CRCW08051R15FKEA CRCW08051R13FKEA CRCW08051R10JNTA CRCW08051R10JNEA CRCW08051R10FKEA CRCW08051R07FKEA CRCW08051R05FKEA CRCW08051R02FKEA CRCW08051R00JNTA CRCW08051R00JNEB CRCW08051R00JNEAIF CRCW08051R00JNEAHP CRCW08051R00JNEA CRCW08051R00FNEB CRCW08051R00FNEA CRCW08051R00FKTA CRCW08051R00FKEAHP CRCW08051R00FKEA CRCW08051M96FKEA CRCW08051M91FKEA CRCW08051M87FKEA CRCW08051M82FKTA
http://www.suvsystem.com/a/1939.aspx

No comments:

Post a Comment