Scientists have found a way to make perovskite solar cells not only highly efficient but also remarkably stable, addressing ...
Chinese solar module maker JinkoSolar has set a new world record for n-type TOPCon solar cell efficiency, reaching 27.79%. The achievement was independently verified by Germany’s Institute for Solar ...
What if the future of solar energy wasn’t just brighter but fundamentally redefined? Imagine a world where solar panels are not only more efficient but also cheaper, more durable, and adaptable to ...
Nanotechnology enables the use of materials with unique optical, electrical, and thermal properties. These materials can be engineered to absorb sunlight more efficiently, reduce energy loss, and ...
Perovskite solar cells are a promising alternative to traditional silicon solar panels but have poor durability. Professor Ted Sargent, Research associate professor Bin Chen, Postdoctoral fellows ...
Sebastian Bonilla receives funding from UK Research and Innovation, The Royal Academy of Engineering, and The Leverhulme Trust. The sight of solar panels installed on rooftops and large energy farms ...
The new cell efficiency comes less than a month after the company achieved the previous record with 25.9% conversion efficiency. Image: Trina Solar. Chinese solar manufacturer Trinasolar has achieved ...
New Nanotech Boosts Solar Cell Efficiency Over 10%. ScienceDaily. Retrieved January 8, 2026 from www.sciencedaily.com / releases / 2025 / 07 / 250713031454.htm Hefei Institutes of Physical Science, ...
Quantum dot solar cells harness the unique properties of semiconductor nanocrystals to capture a broader spectrum of solar radiation, offering substantial promise for next-generation photovoltaics. By ...
In a groundbreaking application of graphene technology, the first graphene-based solar cells have been successfully utilized to power temperature sensors. This development, reported on November 12, ...
Solar panels are an increasingly efficient, cost-effective, and higher-power-density renewable-energy source, though most ...