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Hierarchical Co 3 O 4 Nano‐Micro Arrays Featuring Superior Activity as Cathode in a Flexible and Rechargeable Zinc–Air Battery

机译:等级CO 3 O 4纳米微型阵列,具有柔性和可充电锌空气电池的优异活动作为阴极

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摘要

Abstract All‐solid‐state zinc–air batteries are characterized as low cost and have high energy density, providing wearable devices with an ideal power source. However, the sluggish oxygen reduction and evolution reactions in air cathodes are obstacles to its flexible and rechargeable application. Herein, a strategy called MOF‐on‐MOF (MOF, metal‐organic framework) is presented for the structural design of air cathodes, which creatively develops an efficient oxygen catalyst comprising hierarchical Co3O4 nanoparticles anchored in nitrogen‐doped carbon nano‐micro arrays on flexible carbon cloth (Co3O4@N‐CNMAs/CC). This hierarchical and free‐standing structure design guarantees high catalyst loading on air cathodes with multiple electrocatalytic activity sites, undoubtedly boosting reaction kinetics, and energy density of an all‐solid‐state zinc–air battery. The integrated Co3O4@N‐CNMAs/CC cathode in an all‐solid‐state zinc–air battery exhibits a high open circuit potential of 1.461 V, a high capacity of 815 mAh g−1 Zn at 1 mA cm−2, a high energy density of 1010 Wh kg−1 Zn, excellent cycling stability as well as outstanding mechanical flexibility, significantly outperforming the Pt/C‐based cathode. This work opens a new door for the practical applications of rechargeable zinc–air batteries in wearable electronic devices.
机译:摘要全固态锌 - 空气电池的特点是成本低,具有高能量密度,提供具有理想电源的可穿戴设备。然而,空气阴极中缓慢的氧还原和进化反应是其柔性和可充电应用的障碍。在此,呈现了一种称为MOF-ON-MOF(MOF,金属有机框架)的策略,用于空气阴极的结构设计,其创造性地发展了一种高效的氧催化剂,所述高效氧催化剂包括锚定的氮气掺杂碳纳米微微阵列的分层CO3O4纳米颗粒柔性碳布(CO3O4 @ N-CNMAS / CC)。该层级和独立结构设计保证了具有多种电催化活性位点的空气阴极上的高催化剂负载,无疑提高了反应动力学,以及全固态锌空气电池的能量密度。全固态锌 - 空气电池中的集成CO3O4 @ N-CNMAS / CC阴极呈现出1.461 V的高开关电位,高容量为815mAhg-1 Zn,1 mA cm-2,高能量密度为1010WH-1 ZN,循环稳定性优异,机械柔韧性优异,显着优于Pt / C基阴极。这项工作为可穿戴电子设备中可充电锌空气电池的实际应用开辟了新门。

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