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Open-Air Plasma-Deposited Multilayer Thin Film Moisture Barriers for Perovskite Solar Cells

机译:露天等离子体沉积多层薄膜防潮屏障,用于钙钛矿太阳能电池

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A scalable, open-air plasma process has been developed to deposit alternating layers of conformal organosilicate and dense SiO2 thin film barriers to prevent moisture ingress. The in-situ low temperature process is suitable for direct deposition on thermally sensitive perovskite devices and is compatible with flexible polymeric substrates. When deposited directly on perovskite solar cells, they retain over 80% of their initial performance for over 660 hours in a 50°C 50%RH accelerated aging environment. Using optical calcium testing, low water vapor transmission rates (WVTR) on the order of 10−3 g/m2/day at an accelerated aging condition of 38°C and 90% relative humidity (RH) are achieved. The ability of the multilayer barrier to enable device resistance to humid environments is crucial towards realizing longer operating lifetimes.
机译:已经开发了可扩展的露天等离子体工艺,以沉积单体化有机硅酸盐和致密SiO的交替层 2 薄膜屏障,以防止水分进入。原位低温工艺适用于直接沉积在热敏钙钛矿器件上,与柔性聚合物基材相容。当直接沉积在Perovskite太阳能电池上时,它们在50℃50%RH加速的老化环境中保留超过660小时的初始性能超过80%。使用光学钙测试,低水蒸气传动速率(WVTR)约10 -3 实现了38℃和90%相对湿度(RH)的加速老化条件下的G / M2 /天。多层屏障能够使设备耐受潮湿环境的能力对于实现更长的操作寿命至关重要。

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