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A miniature solar device for overall water splitting consisting of series-connected spherical silicon solar cells

机译:用于整体水分解的微型太阳能装置,由串联的球形硅太阳能电池组成

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A novel "photovoltaics (PV) + electrolyzer" concept is presented using a simple, small, and completely stand-alone non-biased device for solar-driven overall water splitting. Three or four spherical-shaped p-n junction silicon balls were successfully connected in series, named "SPHELAR." SPHELAR possessed small projected areas of 0.20 (3PVs) and 0.26?cm(2) (4PVs) and exhibited working voltages sufficient for water electrolysis. Impacts of the configuration on the PV module performance were carefully analyzed, revealing that a drastic increase in the photocurrent (≈20%) was attained by the effective utilization of a reflective sheet. Separate investigations on the electrocatalyst performance showed that non-noble metal based materials with reasonably small sizes (0.80?cm(2)) exhibited substantial currents at the PV working voltage. By combining the observations of the PV characteristics, light management and electrocatalyst performance, solar-driven overall water splitting was readily achieved, reaching solar-to-hydrogen efficiencies of 7.4% (3PVs) and 6.4% (4PVs).
机译:提出了一种新颖的“光伏(PV)+电解器”概念,该概念使用简单,小型且完全独立的无偏压设备进行太阳能驱动的总水分解。成功地串联了三个或四个球形的p-n结硅球,称为“ SPHELAR”。 SPHELAR具有0.20(3PVs)和0.26?cm(2)(4PVs)的小投影面积,并具有足以进行水电解的工作电压。仔细分析了配置对PV组件性能的影响,发现通过有效利用反射片可实现光电流的急剧增加(约20%)。对电催化剂性能的单独研究表明,尺寸较小(<0.80?cm(2))的非贵金属基材料在PV工作电压下显示出大量电流。通过结合对PV特性,光管理和电催化剂性能的观察,可以轻松实现太阳能驱动的总水分解,达到7.4%(3PVs)和6.4%(4PVs)的太阳能效率。

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