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Solar-rechargeable battery based on photoelectrochemical water oxidation: Solar water battery

机译:基于光电化学水氧化的太阳能充电电池:太阳能水电池

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摘要

As an alternative to the photoelectrochemical water splitting for use in the fuel cells used to generate electrical power, this study set out to develop a solar energy rechargeable battery system based on photoelectrochemical water oxidation. We refer to this design as a “solar water battery”. The solar water battery integrates a photoelectrochemical cell and battery into a single device. It uses a water oxidation reaction to simultaneously convert and store solar energy. With the solar water battery, light striking the photoelectrode causes the water to be photo-oxidized, thus charging the battery. During the discharge process, the solar water battery reduces oxygen to water with a high coulombic efficiency (>90%) and a high average output voltage (0.6 V). Because the reduction potential of oxygen is more positive [E0 (O2/H2O) = 1.23 V vs. NHE] than common catholytes (e.g., iodide, sulfur), a high discharge voltage is produced. The solar water battery also exhibits a superior storage ability, maintaining 99% of its specific discharge capacitance after 10 h of storage, without any evidence of self-discharge. The optimization of the cell design and configuration, taking the presence of oxygen in the cell into account, was critical to achieving an efficient photocharge/discharge.
机译:作为用于产生电能的燃料电池中的光化学水分解的替代方法,这项研究着手开发基于光化学水氧化的太阳能可充电电池系统。我们将此设计称为“太阳能水电池”。太阳能电池将光电化学电池和电池集成到单个设备中。它使用水氧化反应来同时转换和存储太阳能。对于太阳能电池,光照射到光电极上会使水被光氧化,从而为电池充电。在放电过程中,太阳能电池以高库仑效率(> 90%)和高平均输出电压(0.6 V)将氧气还原为水。因为氧的还原电位比普通的阴极电解液(例如,碘化物,硫)更正[E 0 (O2 / H2O)= 1.23 V vs. NHE],所以产生了高放电电压。太阳能电池还具有出色的存储能力,在存储10 h后仍可保持其比放电电容的99%,而没有任何自放电的迹象。考虑到电池中存在氧气,优化电池设计和配置对于实现有效的光充电/放电至关重要。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Gonu Kim; Misol Oh; Yiseul Park;

  • 作者单位
  • 年(卷),期 -1(6),-1
  • 年度 -1
  • 页码 33400
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

  • 入库时间 2022-08-21 10:58:24

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