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All-Solid-State, Foldable, and Rechargeable Zn-Air Batteries Based on Manganese Oxide Grown on Graphene-Coated Carbon Cloth Air Cathode

机译:石墨烯涂层碳布空气阴极上生长的氧化锰为基础的全固态,可折叠和可充电锌空气电池

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摘要

Pliable, safe, and inexpensive energy storage devices are in demand to power modern flexible electronics. In this work, a foldable battery based on a solid-state and rechargeable Zn-air battery is introduced. The air cathode is prepared by coating graphene flakes on pretreated carbon cloth to form a dense, interconnected, and conducting carbon network. Manganese oxide hierarchical nanostructures are subsequently grown on the large surface area carbon network, leading to high loading of active catalyst per unit volume while maintaining the mechanical and electrical integrity of the air cathode. Solid-state and rechargeable Zn-air battery with such air cathode exhibits similar polarization curve and resistance at its flat and folded states. The folded battery is able to deliver a power density as high as approximate to 32 mW cm(-2) and good cycling stability of up to 110 cycles. In addition, the flat battery shows similar discharge/charge curve and stable cycling performance after 100 times of repeated folding and unfolding, indicating its high mechanical robustness.
机译:为现代柔性电子设备提供动力,需要一种可靠,安全和便宜的储能设备。在这项工作中,介绍了一种基于固态可充电Zn-空气电池的可折叠电池。通过在预处理的碳布上涂覆石墨烯薄片以形成致密,相互连接且导电的碳网络来制备空气阴极。氧化锰分层纳米结构随后在大表面积的碳网络上生长,导致每单位体积的活性催化剂高负载,同时保持了空气阴极的机械和电气完整性。具有这种空气阴极的固态可充电Zn-空气电池在其扁平和折叠状态下具有相似的极化曲线和电阻。折叠电池能够提供高达32 mW cm(-2)的功率密度,并具有高达110个循环的良好循环稳定性。此外,扁平电池在反复折叠和展开100次后显示出相似的放电/充电曲线,并具有稳定的循环性能,表明其具有很高的机械强度。

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