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Semi-transparent Cu_2ZnSnS_4 solar cells by drop-casting of sol-gel ink

机译:半透明Cu_2ZNS_4通过溶胶 - 凝胶油墨的铸造太阳能电池

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In current days, the research in the photovoltaic field aims to find and investigate cheap thin-film materials based on earth-abundant element suitable for terawatt era. To this purpose Cu2ZnSnS4 (CZTS) has been widely studied in the last decade, being structurally analogous to the well-documented Cu(In,Ga)Se2 but featuring inexpensive and abundant components. Recently we have reported a simple and straightforward sol-gel process to produce CZTS-based solar cells demonstrating how it is possible to provide a working device with an easily transferable on an industrial scale and low cost process. In this work we report important improvements to the described above methodology by growing CZTS thin films on a transparent substrate aiming to produce bifacial solar cells suitable for an incorporation into a tandem solar cell architecture. The direct droplet deposition of the precursor ink onto the FTO substrate, leads to the kesterite phase. Gelation and annealing steps, without the addition of further sulphur sources make this procedure suitable for industrial scale-up saving a considerable amount of raw materials. UV-Vis absorption, ii-Raman, Photoluminescence, X-ray diffraction and Energy Dispersive Spectroscopy measurements have been performed on the so-produced thin films. The morphology of the samples has been investigated by scanning electron microscopy, proving the extremely good quality of the material. PV devices with a FTO/Mo/CZTS/CdS/ZnO/AZO architecture were obtained showing eta = 1.11% in a bifacial set up. A lower eta = 0.99% has been measured by illuminating the front side of the cell only, demonstrating that the bifacial setup allows a +11% efficiency enhancement.
机译:目前,光伏电磁场的研究旨在基于适用于Terawatt Era的地面丰富的元件来查找和调查便宜的薄膜材料。为此目的,CU2ZNS4(CZT)在过去的十年中已被广泛研究,在结构上类似于良好地记录的CU(IN,GA)SE2,但具有廉价和丰富的组件。最近,我们已经报道了一种简单而直接的溶胶 - 凝胶工艺,以产生基于CZTS的太阳能电池,示出了如何提供工业规模和低成本过程易于转移的工作装置。在这项工作中,我们通过在透明基板上生长CZTS薄膜来报告上述方法的重要改进,旨在产生适合于掺入串联太阳能电池架构的双环太阳能电池。前体墨水的直接液滴沉积在FTO底物上,导致酯矿石相。凝胶化和退火步骤,在不添加其他硫磺烃源的情况下,这一程序适用于工业扩展的工业扩展,节省了相当数量的原料。已经对如此产生的薄膜进行了UV-Vis吸收,II-拉曼,光致发光,X射线衍射和能量分散光谱测量。通过扫描电子显微镜研究了样品的形态,证明了材料的极好质量。获得具有FTO / MO / CZTS / CDS / ZnO / AZO架构的光伏器件在双翼设置中显示ETA = 1.11%。仅通过照射电池的前侧来测量较低的ETA = 0.99%,证明双因素设置允许+ 11%的效率增强。

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