19 year old improves solar power capacity by 40%

The idea is such a simple one: rotate solar panels to follow the sun throughout the day so they capture the most of the sun's energy as possible. Solar power tracking systems have been around for some time, but a 19-year-old

Linked quantum dots could create cheap, efficient solar cells

Researchers at the Kavli Institute of Nanoscience at TU Delft in the Netherlands have demonstrated that electrons can move freely in layers of linked

Next-generation solar cell technology

The most efficient colloidal quantum dot (CQD) solar cell ever has been created by researchers from the University of Toronto (U of T), King Abdullah

New solar product captures up to 95 percent of light energy

Efficiency is a problem with today's solar panels; they only collect about 20 percent of available light. Now, a University of Missouri engineer has developed a flexible solar sheet that captures more than 90 percent of available light, and he plans to make prototypes available to consumers within the next five years.

Solar Impulse sun-powered plane successfully completes first international flight

The totally solar powered Solar Impulse aircraft made its maiden international flight, piloted by Andre Borschberg, across Europe on Friday

Collecting the sun's energy: novel electrode for flexible thin-film solar cells

Conventional silicon-based rigid solar cells generally found on the market are not suitable for manufacturing moldable thin-film solar cells, in which a transparent, flexible and electrically conductive electrode collects the light and carries away the current. A new woven polymer electrode has now produced first results which are very promising, indicating that the new material may be a substitute for indium tin oxide coatings.

Solar power goes viral: modified virus improves solar-cell efficiency by one-third

(PhysOrg.com) -- Researchers at MIT have found a way to make significant improvements to the power-conversion efficiency of solar cells by enlisting the services of tiny viruses to perform detailed assembly work at the microscopic level.

New reactor paves the way for efficiently producing fuel from sunlight

Using a common metal most famously found in self-cleaning ovens, Sossina Haile hopes to change our energy future. The metal is cerium oxide -- or ceria -- and it is the centerpiece of a promising new technology developed by Haile and her colleagues that concentrates solar energy and uses it to efficiently convert carbon dioxide and water into fuels.

Solar comes of age: solarcity to double PV systems on american homes by 2016

A leading American solar company is set to begin the largest residential rooftop project ever undertaken, effectively doubling the number of solar systems currently on homes around the U.S.

New Zealand commits to spend $6.7 million to fund first solar plant for Tonga

PV - New Zealand commits to spend $6.7 million to fund first solar plant for Tonga - Renewable Energy Magazine, at the heart of clean energy journalism

Cost of solar electricity to be halved by 2020

PV - Cost of solar electricity to be halved by 2020 - Renewable Energy Magazine, at the heart of clean energy journalism

Australia takes first steps into utility-scale solar

Australia is taking its first leap into utility-scale solar PV with a 10-megawatt (MW) AC project located in Western Australia – 10 times larger than any operating project in the country.

Solar may produce most of world’s power by 2060, IEA says

PV - Solar may produce most of world’s power by 2060, IEA says - Renewable Energy Magazine, at the heart of clean energy journalism

Two-layer solar cell to achieve 42 percent efficiency

In a paper published in Nature Photonics, University of Toronto researchers report the first efficient two-layer solar cell based on colloidal quantum dots