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Solution-Deposited CIGS Thin Films for Ultra-Low-Cost Photovoltaics

机译:用于超低成本光伏的溶液沉积的CIGS薄膜

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We describe the production of photovoltaic modules with high-quality large-grain copper indium gallium selenide (CIGS) thin films obtained with the unique combination of low-cost ink-based precursors and a reactive transfer printing method. The proprietary metal-organic inks contain a variety of soluble Cu-, In- and Ga- multinary selenide materials; they are called metal-organic decomposition (MOD) precursors, as they are designed to decompose into the desired precursors. Reactive transfer is a two-stage process that produces CIGS through the chemical reaction between two separate precursor films, one deposited on the substrate and the other on a printing plate in the first stage. In the second stage, these precursors are rapidly reacted together under pressure in the presence of heat. The use of two independent thin films provides the benefits of independent composition and flexible deposition technique optimization, and eliminates pre-reaction prior to the synthesis of CIGS. In a few minutes, the process produces high quality CIGS films, with large grains on the order of several microns, and preferred crystallographic orientation, as confirmed by compositional and structural analysis by XRF, SIMS, SEM and XRD. Cell efficiencies of 14% and module efficiencies of 12% were achieved using this method. The atmospheric deposition processes include slot die extrusion coating, ultrasonic atomization spraying, pneumatic atomization spraying, inkjet printing, direct writing, and screen printing, and provide low capital equipment cost, low thermal budget, and high throughput.
机译:我们描述了具有优质大粒铜铟镓硒(CIGS)薄膜的光伏模块的生产,其具有独特的基于低成本油墨的前体和活性转移印刷方法的独特组合。专有的金属 - 有机油墨含有各种可溶性的Cu-,且Ga-多元硒化物材料;它们被称为金属 - 有机分解(Mod)前体,因为它们被设计成分解成所需的前体。反应性转移是两级过程,其通过两种单独的前体膜之间的化学反应产生CIG,在第一阶段的印版上沉积在基板上,另一个在印版上。在第二阶段,这些前​​体在加热存在下在压力下快速反应在一起。使用两个独立的薄膜提供独立组成和柔性沉积技术优化的益处,并在合成CIGS之前消除预反应。在几分钟内,该过程产生高质量的CIGS膜,大颗粒大约几微米,优选的晶形取向,通过XRF,SIMS,SEM和XRD的组成和结构分析证实。使用该方法实现了14%的细胞效率和12%的模块效率。大气沉积工艺包括槽模挤出涂层,超声雾化喷涂,气动雾化喷涂,喷墨印刷,直接写入和丝网印刷,并提供低资本设备成本,低热预算和高吞吐量。

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