首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Mechanical synthesis of high purity Cu-In-Se alloy nanopowder as precursor for printed CISe thin film solar cells
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Mechanical synthesis of high purity Cu-In-Se alloy nanopowder as precursor for printed CISe thin film solar cells

机译:机械合成高纯度Cu-In-Se合金纳米粉作为印刷CISe薄膜太阳能电池的前体

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摘要

Mechanical alloying and ball milling are low cost, up-scalable techniques for the preparation of high purity chalcogenide nanopowders to be used as precursor material for printing thin film solar cells. In this study, high purity copper indium selenium (Cu-In-Se) alloy nanopowders with 20-200 nm particle size were synthesized from macroscopic elemental Cu, In and Se powders via mechanical alloying and planetary ball milling. The particle size distribution, morphology, composition, and purity level of the synthesized Cu-In-Se alloy nanopowders were investigated. Thin Cu-In-Se alloy nanopowder ink coatings, deposited on Mo-coated glass substrates by doctor blading, were converted into a CuInSe2 semiconductor film by selenization heat treatment in Se vapor. The CuInSe2 film showed semiconducting band gap around 1 eV measured by photoluminescence spectroscopy. CuInSe2 absorber layer based thin film solar cell devices were fabricated to assess their performance. The solar cell device showed a total efficiency of 4.8%, as measured on 0.25 cm2 area cell.
机译:机械合金化和球磨是用于制备高纯度硫族化物纳米粉的低成本,可升级的技术,该高纯硫族化物纳米粉可用作印刷薄膜太阳能电池的前体材料。在这项研究中,通过宏观合金化的铜,铟和硒粉末,通过机械合金化和行星球磨合成了粒径为20-200 nm的高纯度铜铟硒(Cu-In-Se)合金纳米粉。研究了合成的Cu-In-Se合金纳米粉体的粒度分布,形态,组成和纯度。通过刮刀刮涂沉积在涂有Mo的玻璃基板上的Cu-In-Se合金纳米粉薄油墨涂层,通过在Se蒸气中进行硒化热处理,转化为CuInSe2半导体膜。通过光致发光光谱法测量,CuInSe2膜显示出约1 eV的半导体带隙。制造基于CuInSe2吸收层的薄膜太阳能电池器件以评估其性能。如在0.25cm 2面积的电池上测得的,太阳能电池装置的总效率为4.8%。

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