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Stabilization of Si microwire arrays for solar-driven H_2O oxidation to O_2(g) in 1.0 M KOH(aq) using conformal coatings of amorphous TiO_2

机译:使用非晶态TiO_2的保形涂层将硅微线阵列稳定化,以在1.0 M KOH(aq)中将太阳驱动的H_2O氧化为O_2(g)

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摘要

Conductive, amorphous TiO_2 coatings deposited by atomic-layer deposition, in combination with a sputter deposited NiCrO_x oxygen-evolution catalyst, have been used to protect Si microwire arrays from passivation or corrosion in contact with aqueous electrolytes. Coated np+-Si/TiO_2/NiCrO_x as well as heterojunction n-Si/TiO_2/NiCrO_x Si microwire-array photoanodes exhibited stable photoelectrochemical operation in aqueous ferri-/ferro-cyanide solutions. The coatings also allowed for photoanodic water oxidation in 1.0 M KOH(aq) solutions for >2200 h of continuous operation under simulated 1 Sun conditions with 100% Faradaic efficiency for the evolution of O_2(g).
机译:通过原子层沉积沉积的导电无定形TiO_2涂层,与溅射沉积的NiCrO_x析氧催化剂结合使用,可保护Si微线阵列免受与含水电解质接触的钝化或腐蚀的影响。涂覆的np + -Si / TiO_2 / NiCrO_x以及异质结n-Si / TiO_2 / NiCrO_x Si微线阵列光阳极在亚铁/氰化铁水溶液中均表现出稳定的光电化学性能。该涂层还允许在1.0 M KOH(aq)溶液中进行光阳极水氧化,在模拟的1个阳光条件下连续运行> 2200 h,并以100%法拉第效率析出O_2(g)。

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