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Spray Plasma Processing of Barrier Films Deposited in Air for Improved stability of Flexible Electronic Devices

机译:喷射空气中沉积的阻挡膜的喷射等离子体处理,以提高柔性电子器件的稳定性

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We report on submicron organosilicate barrier films produced rapidly in ambient by a scalable spray plasma process for improved solar cell stability. The plasma is at a sufficiently low temperature to be compatible with flexible electronic devices. The thickness of the barrier films is tunable and fully transparent over the visible spectrum. The morphology and density of the barrier are shown to improve with the addition of a fluorine-based precursor. Thin-film perovskite solar cells with submicron coatings exhibited significant improvements in stability when exposed to light, heat, and moisture. X-ray diffraction measurements performed while heating showed the barrier film dramatically slows the formation of PbI2. When deposited on a flexible substrate, the barrier films exhibit no signs of cracking or delamination after 10,000 bending cycles on a 127 μm substrate with a bending radius of 1 cm.
机译:我们通过可伸缩的喷雾等离子体工艺报告亚微米有机硅酸盐阻挡膜,通过可伸缩的喷雾等离子体工艺来提高太阳能电池稳定性。等离子体处于足够低的温度与柔性电子器件兼容。阻挡膜的厚度是可调谐的并且在可见光谱上完全透明。屏障的形态和密度随着添加氟基前体而改善。薄膜Perovskite具有亚微米涂层的太阳能电池在暴露于光线,热量和水分时,稳定性的显着改善。在加热显示阻挡膜的同时进行的X射线衍射测量显着减缓了PBI2的形成。当沉积在柔性基板上时,阻挡膜在127μm基板上的10,000弯曲循环后没有裂缝或分层的迹象,其弯曲半径为1cm。

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