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Light-induced water oxidation at silicon electrodes functionalized with a cobalt oxygen-evolving catalyst

机译:钴逸出催化剂功能化的硅电极上的光诱导水氧化

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摘要

Integrating a silicon solar cell with a recently developed cobalt-based water-splitting catalyst (Co-Pi) yields a robust, monolithic, photo-assisted anode for the solar fuels process of water splitting to O2 at neutral pH. Deposition of the Co-Pi catalyst on the Indium Tin Oxide (ITO)-passivated p-side of a np-Si junction enables the majority of the voltage generated by the solar cell to be utilized for driving the water-splitting reaction. Operation under neutral pH conditions fosters enhanced stability of the anode as compared to operation under alkaline conditions (pH 14) for which long-term stability is much more problematic. This demonstration of a simple, robust construct for photo-assisted water splitting is an important step towards the development of inexpensive direct solar-to-fuel energy conversion technologies.
机译:将硅太阳能电池与最新开发的钴基水分解催化剂(Co-Pi)集成在一起,可得到坚固,整体的光助阳极,用于太阳能电池中水在中性pH值下分解为O2。将Co-Pi催化剂沉积在np-Si结的铟锡氧化物(ITO)钝化的p侧上,可使太阳能电池产生的大部分电压用于驱动水分解反应。与在碱性条件下(pH值为14)相比,在中性pH条件下进行操作可提高阳极的稳定性,而在碱性条件下,长期稳定性存在较大问题。这种简单,坚固的光辅助水分解结构的演示是朝着开发廉价的直接太阳能到燃料能源转换技术迈出的重要一步。

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