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New 4-Terminal solar cells use IZO and anti-reflective coatings for higher efficiency and a path to cost-effective renewable energy.
Chinese scientists create efficient perovskite solar cells with self-disintegrating seeds, achieving 23.73% efficiency and 83.64% fill factor.
Researchers have successfully improved the durability and stability of lithium-sulfur batteries using a Self-Structured Binder Confinement of Sulfur (CBAD) technology.
New research integrates thermoelectric coolers into solar systems, boosting efficiency by 9.27%, reducing costs by 10.56% over 20 years, and offering a 6.5-year break-even.
Innovative approaches boost PSM durability, paving the way for commercial solar energy advancements.
New air-bridge TPV cells boast 44% efficiency, enhancing energy reflection with nano air gaps, advancing renewable energy networks.
New PV-TEG system integrates PCM and cooling water, enhancing solar efficiency by 10.4% and power output by 1.9% under 800 W/m² irradiation.
Chinese team develops efficient carbon-based perovskite solar cells without costly HTL, using innovative heterostructures, achieving 14.15% efficiency, reducing costs, and promoting commercialization.
New sol-gel coating enhances solar panel efficiency, durability, and hydrophobicity.
Scientists craft a tandem solar cell with over 25% efficiency, on a path to surpass 30%, potentially revolutionizing renewable energy.
Chinese researchers develop an Improved Snake Optimizer algorithm to significantly enhance solar cell efficiency, offering a promising step towards sustainable energy solutions.
New intaglio method enhances silicon solar cells, halving silver use and boosting efficiency to 21%, with potential for further improvement.