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Transfer Printed Flexible and Stretchable Thin Film Solar Cells Using a Water-Soluble Sacrificial Layer

机译:使用水溶性牺牲层转印印刷的柔性和可拉伸的薄膜太阳能电池

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摘要

Recently, the rapid and significant progress in the development of various stretchable electronics has triggered intense research interest. Although the remarkable features of transfer printing processes have enabled the use of inorganic crystalline semiconductors in various types of stretchable devices, including solar cells, light-emitting diodes, circuits, and photodetectors, there are few examples of stretchable electronics using thin film semiconductors. Transfer printing of inorganic amorphous thin film semiconductors remains a challenge because no suitable sacrificial layer is available. To meet this challenge, a water-soluble germanium oxide sacrificial layer is developed. Stretchable inorganic amorphous thin film solar cells are produced using a transfer printing process with a water-soluble sacrificial layer. This first attempt to fabricate stretchable solar cells with inorganic amorphous thin film semiconductors significantly broadens the scope of solar cell applications. Moreover, the germanium oxide sacrificial layer can be used in other thin film electronics applications.
机译:最近,各种可拉伸电子产品的发展的快速和显着进展引发了激烈的研究兴趣。尽管转移印刷方法的显着特征使得在各种类型的可拉伸装置中使用无机晶体半导体,但包括太阳能电池,发光二极管,电路和光电探测器,但是使用薄膜半导体的可拉伸电子器件的示例很少。无机非晶薄膜半导体的转印印刷仍然是一个挑战,因为没有合适的牺牲层。为了满足这一挑战,开发了一种水溶性锗氧化锗牺牲层。使用具有水溶性牺牲层的转移印刷方法生产可拉伸的无机非晶薄膜太阳能电池。第一次尝试制造具有无机非晶薄膜半导体的可拉伸太阳能电池显着拓宽了太阳能电池应用的范围。此外,氧化锗牺牲层可用于其他薄膜电子应用。

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