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Directly Electrospun Carbon Nanofibers Incorporated with Mn3O4 Nanoparticles as Bending-Resistant Cathode for Flexible Al-Air Batteries

机译:直接电纺碳纳米纤维与Mn3O4纳米粒子结合作为柔性铝空气电池的抗弯曲阴极

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摘要

Al-air batteries are regarded as potential power source for flexible and wearable devices. However, the traditional cathodes of Al-air batteries are easy to be broken after continuous bending. This is why few Al-air batteries have been tested under the state of dynamic bending so far. Herein, carbon nanofibers incorporated with Mn O catalyst have been prepared as bending-resistant cathodes through direct electrospinning. The cathode assembled in Al-air battery showed excellent electrochemical and mechanical stability. A high specific capacity of 1021 mAh/cm was achieved after bending 1000 times, which is 81.7% of that in platform state. This work will facilitate the progress of using Al-air battery in flexible electronics.
机译:铝空气电池被认为是柔性和可穿戴设备的潜在电源。然而,铝空气电池的传统阴极在连续弯曲后容易断裂。这就是为什么到目前为止在动态弯曲状态下很少测试铝制空气电池的原因。在此,已经通过直接电纺丝将掺有Mn O催化剂的碳纳米纤维制备为抗弯曲阴极。组装在铝空气电池中的阴极显示出优异的电化学和机械稳定性。弯曲1000次后,可实现1021 mAh / cm的高比容量,是平台状态下的81.7%。这项工作将促进在柔性电子产品中使用铝制空气电池的进展。

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