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首页> 外文期刊>Electrochimica Acta >Pulse electrodeposition as a tool to enhance the penetration of cuprous iodide in dye-sensitized solid-state solar cells
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Pulse electrodeposition as a tool to enhance the penetration of cuprous iodide in dye-sensitized solid-state solar cells

机译:脉冲电沉积作为增强染料敏化固态太阳能电池中碘化亚铜渗透的工具

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摘要

The electrodeposition of cuprous iodide (CuI) within the pores of interconnected TiO_2 particles has been investigated using current pulse electrodeposition and continuous current electrodeposition techniques, both in the dark and under illumination. Under illumination, the solar cells fabricated using the electrodes prepared by pulse electrodeposition, provide a collection efficiency of 3.28% with N-719 dye, whereas those prepared by continuous electrodeposition give only 0.75% efficiency, both in the absence of triehylammine hydrothiocyanate (THT, a crystal growth inhibiter) and under simulated AM 1.5 illumination. The CuI films were also grown by combining pulse electrodeposition (without THT) with drop-by-drop solution casting (with THT). The cells prepared by these electrodes give an even higher collection efficiency of 3.85%, as compared with the 3.38% efficiency of films prepared by only solution casting Cul in the presence of THT. This is the first report of the use of pulse electrodeposition to prepare CuI for dye-sensitized solid-state solar cells.
机译:在黑暗和光照条件下,使用电流脉冲电沉积和连续电流电沉积技术研究了互连的TiO_2颗粒的孔内碘化亚铜(CuI)的电沉积。在光照下,使用脉冲电沉积制备的电极制造的太阳能电池在使用N-719染料时的收集效率为3.28%,而通过连续电沉积制备的太阳能电池在没有三乙胺氢硫氰酸盐(THT,晶体生长抑制剂)并在模拟的AM 1.5光照下。通过将脉冲电沉积(不带THT)与逐滴溶液流延(带THT)相结合,还可以生长CuI膜。与仅在THT存在下仅通过溶液浇铸Cul制备的薄膜的3.38%的效率相比,通过这些电极制备的电池的收集效率甚至更高,为3.85%。这是首次使用脉冲电沉积制备用于染料敏化固态太阳能电池的CuI的报告。

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