Perovskite is being called a 'wonder material' by scientists and engineers who believe it could lead to a major breakthrough in solar energy. At Oxford PV's laboratory in the UK, researchers are testing new solar cells that combine silicon, the standard material in solar panels, with perovskite. These are known as tandem solar cells, and they are designed to be much more efficient at converting sunlight into electricity than traditional panels.
Perovskite is a mineral that can be made in the lab from elements like bromine, chlorine, lead, and tin. Its crystal structure allows it to absorb more sunlight and turn it into energy more effectively. This means that solar panels using perovskite could generate more electricity from the same amount of sunlight, making solar power cheaper and more accessible.
However, there are challenges to overcome. Perovskite can degrade faster than silicon, which means the panels might not last as long. There is also concern about the use of lead, a toxic substance, in the panels. Researchers are working to make the panels more durable and to develop safe recycling methods. They are running tests that expose the panels to extreme conditions, like high heat and humidity, to see how they hold up over time.
Solar energy is growing rapidly, with a 29 percent increase in 2024. It is now one of the most affordable sources of electricity worldwide. But silicon panels have a limit to how much sunlight they can convert into energy. Perovskite panels can use more of the light spectrum, making them more efficient. Some perovskite cells are so thin they can be sprayed onto surfaces like windows, opening up new possibilities for solar power.
When perovskite is used together with silicon, the efficiency of the panels increases even more. Oxford PV claims their tandem panels can reduce the cost of electricity by about 10 percent compared to standard panels. They are testing these panels in different environments to collect data on their performance.
Other companies are also developing perovskite solar panels, with some reporting even higher efficiencies in laboratory tests. These panels could be used not only on rooftops and solar farms but also on electric cars to provide extra charging and on satellites, where their lightweight and high efficiency are especially valuable.
Despite the excitement, experts say it is important to see how these panels perform in real-world conditions. The technology is still new, and long-term reliability data is limited. Researchers are optimistic, though, and believe that with continued development, perovskite could transform the solar industry and help make clean energy more widely available.
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