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High-efficiency flexible CdTe superstrate devices

机译:高效灵活CDTE超级仪器设备

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Flexible, superstrate CdTe devices combine the advantages of a commercially demonstrated, low-cost manufacturing process with a lightweight, flexible form factor. Here, we present data on cell efficiencies greater than 16%, and the critical processing changes that have enabled recent efficiency increases. The devices in this study were made on Corning? Willow? Glass, which is a highly transparent, flexible, hermetic, and dimensionally stable substrate that can withstand high processing temperatures. To date, we have produced devices with several different combinations of front and back contacts on this glass and have found that it is compatible with most of our standard processing steps. One of our best devices to date has a certified efficiency of 16.2%, with a short-circuit current density (J) of 25.6 mA/cm, an open-circuit voltage of 820 mV, and a fill factor (FF) of 77.3%. The increased J in this cell is due to an improved sputtered CdS:O deposition process, and the high FF is due to a co-evaporated ZnTe:Cu back contact.
机译:灵活的超级型CDTE器件将商业显示的低成本制造工艺的优点与轻质,柔性的外形相结合。在这里,我们呈现大于16%的细胞效率的数据,并且启用了最近效率的关键处理变化增加。这项研究中的装置是在康宁上进行的?柳?玻璃,这是一种高度透明,柔韧,密封,尺寸稳定的基材,可以承受高处理温度。迄今为止,我们在该玻璃上生产了具有几种不同组合的设备,并发现它与我们的大多数标准处理步骤兼容。我们最好的设备之一迄今的认证效率为16.2%,短路电流密度(j)为25.6 mA / cm,开路电压为820 mV,填充因子(FF)为77.3% 。该电池中的增加的J是由于改进的溅射CD:O沉积过程,并且高FF是由于共蒸发的ZnTe:Cu背接触。

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