Solar energy-driven H₂O₂ photosynthesis from water and oxygen using Ba-implanted ordered carbon nitride

Solar energy-driven H₂O₂ photosynthesis from water and oxygen using Ba-implanted ordered carbon nitride

H2O2, a green oxidant and clean fuel, is in high demand across chemical industries, environmental treatments, and even aerospace. However, traditional production methods rely on energy-intensive processes that are not environmentally friendly. Scientists have been seeking a greener alternative, and semiconductor photocatalysis using solar energy to drive chemical reactions has emerged as a promising solution. H2O2, a green oxidant and clean fuel, is in high demand across chemical industries, environmental treatments, and even aerospace. However, traditional production methods rely on energy-intensive processes that are not environmentally friendly. Scientists have been seeking a greener alternative, and semiconductor photocatalysis using solar energy to drive chemical reactions has emerged as a promising solution. Analytical Chemistry Materials Science Phys.org – latest science and technology news stories

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