A new bifacial solar cell architecture developed by researchers at Soochow University, Zhejiang Jinko ...
A new solar breakthrough may overcome a long-standing efficiency barrier. Researchers used a “spin-flip” metal complex to capture and multiply energy from sunlight through singlet fission. The result ...
Solar cells, devices that can convert sunlight into electricity, are now widely used in many countries worldwide. Over the ...
Research appearing in Communications Materials has shown that perovskite solar cells (PSCs) are remarkably resilient to dust ...
Perovskite solar cells are a high-efficiency, low-cost alternative to traditional silicon-based solar panels. With the perovskite solar cell industry expected to reach $1.2 billion by 2033, there’s ...
Dye-sensitised solar cells (DSSCs) have emerged as a promising photovoltaic technology due to their cost-effective materials, simplified fabrication processes and attractive aesthetic versatility. By ...
Swansea University researchers found that perovskite solar cells can tolerate dusty fabrication environments, performing almost as well as those made in cleanrooms. The findings suggest low-cost, ...
Our research focuses on developing innovative materials that can improve solar cell technology. We specialize in creating new materials that can capture and transport solar energy more efficiently, ...
Perovskites are semiconducting materials that have rapidly transformed the field of optoelectronics, demonstrating ...
P-type dye-sensitised solar cells (p-DSSCs) represent a promising class of photovoltaic devices that utilise p-type semiconductors – most commonly nickel oxide – as the photoactive electrode. These ...
Leading US based module manufacturer SEG Solar has held a ceremony to mark the successful roll-out of its first high-efficiency N-type solar cell at its smart manufacturing plant in Batang, Indonesia.
ZnSc 2 S 4 exhibits a direct bandgap and can emit light from orange to blue. Its composition can be chemically tuned to switch between n-type and p-type conduction over nine orders of magnitude, ...