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Design, Development and Manufacture of High-Efficiency Low-Cost Solar Modules Based on CIGS PVICs

机译:基于CIGS PVIC的高效低成本太阳能电池组件的设计,开发和制造

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We describe the design, development and manufacture of solar power panels based on photovoltaic integrated circuits (PVICs) with high-quality high-uniformity Copper Indium Gallium Selenide (CIGS) thin films produced with the unique combination of low-cost ink-based and physical vapor deposition (PVD) based nanoengineered precursor thin films and a reactive transfer printing method. Reactive transfer is a two-stage process relying on chemical reaction between two separate precursor films to form CIGS, one deposited on the substrate and the other on a printing plate in the first stage. In the second stage, these precursors are brought into intimate contact and rapidly reacted under pressure in the presence of an electrostatic field while heat is applied. 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. High quality CIGS with large grains on the order of several microns, and of preferred crystallographic orientation, are formed in just several minutes based on compositional and structural analysis by XRF, SIMS, SEM and XRD. Cell efficiencies of 14% and module efficiencies of 12% have been achieved using this method. When atmospheric pressure deposition of inks is utilized for the precursor films, the approach additionally provides lower energy consumption, higher throughput, and further reduced capital equipment cost with higher uptime.
机译:我们描述了基于光伏集成电路(PVIC)的太阳能电池板的设计,开发和制造,该光伏集成电路具有高质量的高均匀性硒化铜铟镓(CIGS)薄膜,并结合了低成本的油墨基和物理的基于气相沉积(PVD)的纳米工程前驱体薄膜和反应转移印刷方法。反应转移是一个分为两个阶段的过程,该过程依赖于两个单独的前体薄膜之间的化学反应以形成CIGS,在第一阶段中,一个沉积在基材上,另一个沉积在印刷板上。在第二阶段中,在加热的同时,使这些前体紧密接触并在存在静电场的压力下迅速反应。使用两个独立的薄膜可提供独立的成分和灵活的沉积技术优化的好处,并消除了在合成CIGS之前的预反应。基于XRF,SIMS,SEM和XRD的成分和结构分析,仅需几分钟即可形成具有几微米量级的大晶粒且具有最佳结晶学取向的高质量CIGS。使用此方法已达到14%的电池效率和12%的模块效率。当将墨水的大气压沉积用于前驱膜时,该方法还可以提供更低的能耗,更高的产量,并通过更长的正常运行时间进一步降低固定设备成本。

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