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Scalable fabrication of flexible thin-film batteries for smart lens applications

机译:用于智能镜头应用的柔性薄膜电池的可伸缩制造

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摘要

The smart lens system is considered one of the ultimate wearable electronics platform, with potential applications in visual-guide or health-monitoring system. However, its development has so far been limited by the development of suitable flexible batteries. Conventional flexible battery fabrication relies on laser-based lift-off techniques, which greatly hinder scalability of such batteries. Here, we design and demonstrate the flexible thin film batteries applied to contact lens form-factor, with direct fabrication on polymer substrates and single step low-temperature annealing. The battery utilizes olivine LiFePO4 thin film cathode, fabricated with 90 degrees off-axis sputter deposition. This achieves unique nanoscale microstructure required for electrochemically active LiFePO4 thin films and effectively reduces the annealing temperature of LiFePO4 down to 400 degrees C for the first time. Equipped with lithium phosphorous oxynitride (LiPON) solid electrolyte and lithium metal anodes on polyimide substrates, the battery demonstrates the energy storage capacity of 35 mu Wh under wet condition. The storage capacity is sufficient to power glucose sensors embedded on the smart lens for up to 11.7 h. In addition, the high energy density of 70 mu Wh/cm(2) flexible batteries may enable a diverse set of micro-scale devices, with scalable and CMOS-compatible fabrication processes.
机译:智能镜头系统被认为是最终可穿戴电子设备之一,具有视觉导向或健康监测系统的潜在应用。然而,它的发展迄今已受到合适的灵活电池的影响。传统的柔性电池制造依赖于基于激光的剥离技术,这大大妨碍了这种电池的可扩展性。在此,我们设计并展示施加到隐形眼镜形状因子的柔性薄膜电池,具有直接制造聚合物基板和单步低温退火。电池采用Olivine Lifepo4薄膜阴极,用90度偏离轴溅射沉积制造。这实现了电化学活性的LiFePO4薄膜所需的独特纳米级微结构,并首次有效地将LiFepo4降至400℃的退火温度降低至400摄氏度。在聚酰亚胺基板上配备磷磷氧氮化锂(Lipon)固体电解质和锂金属阳极,在潮湿条件下,电池展示了35μWH的能量储存能力。存储容量足以为嵌入智能镜头嵌入智能镜头的葡萄糖传感器,最高可达11.7小时。另外,70μm/ cm(2)柔性电池的高能量密度可以实现多样化的微尺度装置,具有可伸缩和CMOS兼容的制造工艺。

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