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Advanced Energy Materials 2019 Semiconductor nanostructureengineering for solar hydrogen production - Sabiha Akter Monny - The University of Queensland

机译:2019年高级能源材料2019半导体纳米结构,用于太阳氢生产 - Sabiha Akter Monny - 昆士兰大学

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In the perspective on the boundless asset of sun oriented vitality and the plenitude of water on earth, delivering hydrogen through photo catalytic and photo electrochemical water parting under sunlight based illumination has the incredible potential to bring to the table an ease, ecologically neighborly, green fuel that doesn't add to ozone depleting substance discharges. Since the spearheading work of Fujishima and Honda in 1972, gigantic exploration on semiconductor-based photo catalysis and photo electrolysis has yielded a superior comprehension of the cycles engaged with photo catalytic and photo electrochemical water parting, just as remarkable upgrade of vitality change proficiency for sun powered hydrogen age.
机译:在阳光照射的照明下,通过光催化和光电化学水分离,通过光催化和光电化学水分离,在阳光照射下施加氢气,在阳光下呈现出令人难以置信,生态睦邻,绿色燃料,通过光催化和光电化学水分离。这不会增加臭氧消耗物质排放。自1972年富士岛和本田的Spear头发工作以来,基于半导体的照片催化和照片电解的巨大探索已经产生了与照片催化和光电化学水分离的循环的卓越理解,同样升级了太阳的活力变化熟练程度动力氢气增长。

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