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Optically Transparent Cathode for Co(lll/ll) Mediated Dye-Sensitized Solar Cells Based on Graphene Oxide

机译:Co(lll / ll)介导的基于氧化石墨烯的染料敏化太阳能电池的光学透明阴极

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Thin semitransparent films were fabricated on F-doped SnO2 (FTO) from single-layer graphene oxide (GO) either pure or in a composite with graphene nanoplatelets. Electrocatalytic activity of prepared films was tested for the Co(bpy)3~(3+/2+) redox couple in acetonitrile electrolyte solution. Pristine GO showed almost no activity, resembling the properties of basal plane pyrolytic graphite. However, electrochemical performance of graphene oxide improved dramatically upon chemical reduction with hydrazine and/or heat treatment. All GO-containing films were firmly bonded to FTO, which contrasted with the poor adhesion of sole graphene nanoplatelets to this support. The activity loss during long-term aging was considerably improved, too. Enhanced stability of GO-containing films together with high electrocatalytic activity is beneficial for application in a new generation of dye-sensitized solar cells employing Co(bpy)3~(3+/2+) as the redox shuttle.
机译:在纯F或与石墨烯纳米片复合的单层石墨烯(GO)上,在F掺杂的SnO2(FTO)上制成半透明薄膜。测试了制备的薄膜在乙腈电解质溶液中对Co(bpy)3〜(3 + / 2 +)氧化还原对的电催化活性。原始的GO几乎没有活性,类似于基平面热解石墨的性质。然而,通过用肼和/或热处理进行化学还原后,氧化石墨烯的电化学性能显着提高。所有含GO的薄膜都牢固地结合在FTO上,这与唯一的石墨烯纳米片对这种载体的粘附力差形成了对比。长期老化过程中的活性损失也大大改善。含GO薄膜的增强的稳定性以及高的电催化活性,有利于应用在以Co(bpy)3〜(3 + / 2 +)作为氧化还原穿梭的新一代染料敏化太阳能电池中。

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