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Fabrication and Characterization of Evaporated ZINC Anodes for Small-Scale ZINC-Air Batteries

机译:小型锌空气电池蒸发锌阳极的制造与表征

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Miniaturization of modern devices, including the advent of highly distributed Internet of Things nodes, has created a need for miniaturization in energy systems. Air batteries can be an attractive power source for such small-scale devices. This paper investigates fabrication of thin zinc anodes for zinc-air batteries using a thermal evaporation technique. Zinc anodes produced by thermal evaporation are found to be of high purity, approximately 96% dense, and smooth (roughness less than 0.1 micron). Anodes up to 8 microns in thickness are demonstrated. The structural characterization of the evaporated zinc films was performed by profilometry and scanning electron microscopy. The purity of the evaporated film was determined by the energy dispersive X-ray spectroscopy. Thin zinc anodes fabricated by evaporation exhibited utilization of 96.5% at 10 mA (5C rate) discharge. Specific capacity was 791mAh/g, approaching the theoretical limit of zinc-air batteries (820mAh/g). The anodes produced by evaporation offer the potential to fabricate high energy density thin film microbatteries.
机译:现代设备的小型化,包括高度分布式的物联网节点的出现,它创造了能量系统中的小型化的需求。空气电池可以是这种小型设备的有吸引力的电源。本文研究了使用热蒸发技术对锌空气电池进行薄锌阳极的制造。通过热蒸发产生的锌阳极是高纯度,约96%致密,光滑(粗糙度小于0.1微米)。证明厚度高达8微米的阳极。通过轮廓测定法和扫描电子显微镜进行蒸发的锌膜的结构表征。通过能量分散X射线光谱法测定蒸发膜的纯度。通过蒸发制造的薄锌阳极表现出10mA(5C速率)放电的96.5%。具体容量为791mAh / g,接近锌 - 空气电池的理论极限(820mAh / g)。通过蒸发产生的阳极提供了制造高能密度薄膜微滴乳的潜力。

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