首页> 外文期刊>Zeitschrift fur Physikalische Chemie: International Journal of Research in Physical Chemistry and Chemical Physics >Integrated Devices for Photoelectrochemical Water Splitting Using Adapted Silicon Based Multi-Junction Solar Cells Protected by ALD TiO2 Coatings
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Integrated Devices for Photoelectrochemical Water Splitting Using Adapted Silicon Based Multi-Junction Solar Cells Protected by ALD TiO2 Coatings

机译:使用ALD TiO2涂层保护的适应性基于硅的多结太阳能电池的光电化学水分裂的集成装置

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摘要

In this study, we present different silicon based integrated devices for photoelectrochemical water splitting, which provide enough photovoltage to drive the reaction without an external bias. Thin films of titanium dioxide, prepared by atomic layer deposition (ALD), are applied as a surface passivation and corrosion protection. The interfaces between the multi-junction cells and the protective coating were optimized individually by etching techniques and finding optimal parameters for the ALD process. The energy band alignment of the systems was studied by X-ray photoelectron spectroscopy (XPS). Electrochemically deposited platinum particles were used to reduce the HER overpotential. The prepared systems were tested in a three-electrode arrangement under AM 1.5 illumination in 0.1 M KOH. In final tests the efficiency and stability of the prepared devices were tested in a two-electrode arrangement in dependence of the pH value with a ruthenium-iridium oxide counter electrode. For the tandem-junction device solar to hydrogen efficiencies (STH) up to 1.8% were reached, and the triple-junction device showed a maximum efficiency of 4.4%.
机译:在这项研究中,我们向光电化学水分裂提供了不同的基于硅的集成装置,其提供足够的光电,以驱动反应而没有外部偏压。通过原子层沉积(ALD)制备的二氧化钛的薄膜作为表面钝化和腐蚀保护。通过蚀刻技术单独优化多结细胞和保护涂层之间的界面,并针对ALD过程找到最佳参数。通过X射线光电子能谱(XPS)研究了系统的能带对准。电化学沉积的铂颗粒用于减少她的过电位。在0.1M KOH的AM 1.5照射下在三电极布置下测试制备的系统。在最终测试中,根据具有钌 - 铱氧化物对电极的pH值,在双电极布置中测试制备的装置的效率和稳定性。对于串联结算装置,达到氢效(STH),达到高达1.8%的氢效,并且三码装置显示出最大效率为4.4%。

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