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Seawater-Mediated Solar-to-Sodium Conversion by Bismuth Vanadate Photoanode- Photovoltaic Tandem Cell: Solar Rechargeable Seawater Battery

机译:海水介导的太阳能 - 碳酸溶态钠转换 - 光伏串联电池:太阳能充电海水电池

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摘要

Summary: Conversion of sunlight to chemical energy based on photoelectrochemical (PEC) processes has been considered as a promising strategy for solar energy harvesting. Here, we propose a novel platform that converts solar energy into sodium (Na) as a solid-state solar fuel via the PEC oxidation of natural seawater, for which a Na ion-selective ceramic membrane is employed together with photoelectrode (PE)-photovoltaic (PV) tandem cell. Using an elaborately modified bismuth vanadate-based PE in tandem with crystalline silicon PV, we demonstrate unassisted solar-to-Na conversion (equivalent to solar charge of seawater battery) with an unprecedentedly high efficiency of 8% (expected operating point under 1 sun) and measured operation efficiency of 5.7% (0.2 sun) and long-term stability, suggesting a new benchmark for low-cost, efficient, and scalable solid solar fuel production. The sodium turns easily into electricity on demand making the device a nature-friendly, monolithic solar rechargeable seawater battery. : Electrochemical Energy Conversion; Energy Storage; Materials Characterization Subject Areas: Electrochemical Energy Conversion, Energy Storage, Materials Characterization
机译:发明内容:基于光电化学(PEC)工艺的阳光转换为化学能源,已被认为是太阳能收割的有希望的策略。在这里,我们提出了一种新颖的平台,将太阳能转化为通过天然海水的PEC氧化作为固态太阳能燃料的钠(Na),其中Na离子选择性陶瓷膜与光电电极(PE) - ophotovold一起使用(PV)串联细胞。使用精心修饰的铋基钒酸酯的PE与晶体硅PV串联,我们展示了无统一的太阳能 - 纳(相当于海水电池的太阳能电荷),其前所未有的高效率为8%(1艘太阳下的预期工作点)测量运行效率为5.7%(0.2太阳)和长期稳定性,建议为低成本,高效和可扩展的固体太阳能燃料生产的新基准。钠容易转向电力,以便为设备提供自然友好的单片太阳能充电海水电池。 :电化学能量转换;储能;材料表征主题区域:电化学能量转换,储能,材料表征

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