University of Cincinnati researchers are reporting early results on a way to make solar-powered panels in lights, calculators and roofs lighter, less expensive, more flexible (therefore less breakable) and more efficient.

Fei Yu, a University of Cincinnati doctoral student in materials engineering, presented new findings on boosting the power conversion efficiency of polymer solar cells on March 3, at the American Physical Society Meeting in Denver.

Yu is experimenting with adding a small fraction of graphene nanoflakes to polymer-blend bulk-heterojunction (BHJ) solar cells to improve performance and lower costs of solar energy.

“There has been a lot of study on how to make plastic solar cells more efficient, so they can take the place of silicon solar cells in the future,” says Yu. “They can be made into thinner, lighter and more flexible panels. However, they’re currently not as efficient as silicon solar cells, so we’re examining how to increase that efficiency.”

Imagine accidentally kicking over a silicon solar-powered garden light, only to see the solar-powered cell crack. Polymers are carbon-based materials that are more flexible than the traditional, fragile silicon solar cells. Charge transport, though, has been a limiting factor for polymer solar cell performance.

Graphene, a natural form of carbon, is a relatively newly discovered material that’s less than a nanometer thin. “Because graphene is pure carbon, its charge conductivity is very high,” explains Yu. “We want to maximize the energy being absorbed by the solar cell, so we are increasing the ratio of the donor to acceptor and we’re using a very low fraction of graphene to achieve that.”

Yu’s research found that efficiency increased threefold by adding graphene, because the material was helping to rapidly transport charges to achieve higher photocurrent. “The increased performance, although well below the highest efficiency achieved in organic photovoltaic (OPV) devices, is nevertheless significant in indicating that pristine graphene can be used as a charge transporter,” says Yu.

Yu’s advisor, Vikram K. Kuppa, an assistant professor in the School of Energy, Environmental, Biological and Medical Engineering (SEEBME) for the UC College of Engineering and Applied Sciences (CEAS), was a contributor to the research. Kuppa is leading the research of a variety of polymer-blend solar cells involving the use of graphene.

Future research will focus on device physics, film morphology and how to control and optimize these randomly distributed graphene nanoflakes by a variety of methods to achieve better performance.

Science Daily;

Global production of photovoltaic (PV) cells grew by 10% in 2012 in comparison to 2011 despite a 9% decline in solar energy investments according to the annual “PV Status Report” released by the European Commission‘s Joint Research Centre. Europe remained a leader in newly installed capacities accounting for 51.7% (16.8 GW) of the 30 GW installed worldwide.

Abundant solar resources in combination with zero emissions from solar installations have attributed to PV energy systems a key role in the transition to a low carbon energy supply. This potential has driven development of more efficient PV modules and transformed the sector into one of the fastest growing industries. Production of PV cells and modules has gone from 46 MW in 1990 to 38.5 GW in 2012. Statistically documented cumulative installations worldwide accounted for almost 100 GW in 2012 placing the EU in the lead position with its share of over 69 GW.

Within the EU, Germany has kept its leading position in PV installation with an additional 7.6 GW in 2012, while Italy‘s newly installed 3.5 GW have allowed it to reach an electricity production covering 7.3% of the total electricity demand during the first seven months of 2013.

A steep, 80% drop of solar modules prices between 2008 and 2012, triggered by an overcapacity of production, created serious financial problems for manufacturers, but led to a consolidation of the industry and fuelled an extensive growth for the PV market in Asia: 60% in 2012 and a projected 100% in 2013. The rise in annual production has resulted in China and Taiwan to accounting for 70% of the global production.

Even with the on-going difficult economic conditions, the number of the new PV markets is increasing. This, along with rising energy prices and the pressure to stabilise the climate will maintain a high demand for solar power systems. Electricity production from PV modules has already proved that it can be cheaper than current conventional consumer electricity prices in many countries. In addition, renewable energies which are not fuel-dependent, are, in contrast to conventional energy sources, among the technologies to offer the prospect of a reduction in prices.

Science Daily;

OLD Fort Village, a gated community being developed in St Ann, will supply its power independent of the Jamaica Public Service (JPS). The housing development, comprising 10 townhouses and apartments, will be the Caribbean‘s first development completely powered by renewable energy sources, the developers said.

“I have been 75 per cent energy independent with solar and wind at my own home in

Photovoltaic cells produce electricity directl...
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The Government of Trinidad& Tobago is exploring the possibility of establishing a facility to produce glass and photovoltaic or solar cells, used to convert sunlight energy into electricity.

Energy Minister Carolyn Seepersad-Bachan said the People’s Partnership Government was looking at importing silica from Guyana to provide raw material for the glass and PV cell plant.

She was speaking earlier this week at a BG luncheon, hosted by energy company BG Trinidad and Tobago, in partnership with State bank First Citizens, at the Hilton Trinidad in Port of Spain.

Seepersad-Bachan said the project could cost around US$2.5 billion.

There is a huge export market for PV systems, solar and wind power systems, she said, adding it was critical the country moves towards energy efficiency.

Finance Minister Winston Dookeran said in the September 8 national budget, in Parliament, the Government would explore the development of alternative energy such as solar and wind energy and explore the prospect of developing a regional effort for the long-term sustainability of the country’s energy supply.

Seepersad-Bachan said the Government was also reintroducing the Petroleum Pricing Committee to ensure there was a system of transparency in the determination of energy prices.

She said the committee will be reintroduced after consultation with the Finance Minister.

Jamaica Observer