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Manganese Oxide Catalyst Grown on Carbon Paper as an Air Cathode for High-Performance Rechargeable Zinc-Air Batteries

机译:在碳纸上生长的锰氧化物催化剂作为高性能可充电锌空气电池的空气阴极

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Manganese oxide is grown directly on carbon paper through a simple immersion process, and used as a catalyst-modified air cathode for rechargeable zinc-air batteries. The manganese oxide is distributed evenly within the porous carbon paper, which promotes a rapid three-phase reaction and high utilization of the active materials. Zinc-air batteries with the manganese oxide catalyst directly grown on the carbon paper exhibit improved performance compared with zinc-air batteries fabricated by using manganese oxide powder catalyst coated on carbon paper. The directly grown catalyst reduces the contact resistance and enhances the discharge/charge profile of the zinc-air batteries. Zinc-air batteries with the directly grown catalyst show a discharge voltage of 1.2V at a current density of 15mAcm(-2) and deliver a power density as high as 108mWcm(-2) at an applied current of 168mAcm(-2). Furthermore, good cycling stability for up to 500cycles is achievable during continuous discharge-charge tests without the need to replace the zinc anode or replenish the electrolyte; this outperforms most currently available bifunctional catalysts for rechargeable zinc-air batteries. This study illustrates a promising platform to enhance the cycle life of rechargeable metal-air batteries.
机译:氧化锰通过简单的浸渍方法直接在碳纸上生长,并用作可充电锌空气电池的催化剂改性的空气阴极。氧化锰在多孔碳纸内均匀分布,促进快速三相反应和高利用活性材料。与通过在碳纸上的锰氧化物粉末催化剂制造的锌 - 空气电池相比,具有直接生长在碳纸上的氧化锰催化剂的锌 - 空气电池。直接生长的催化剂降低了接触电阻,增强了锌空气电池的放电/充电曲线。具有直接生长催化剂的锌 - 空气电池显示出1.2V的电流密度为15macM(-2)的放电电压,并在168macm(-2)的施加电流下提供高达108mWcm(-2)的功率密度。此外,在连续放电电荷测试期间可以实现良好的循环稳定性,可在连续放电电荷测试期间可实现,而无需更换锌阳极或补充电解质;这优于最目前的可用于可充电锌空气电池的可用双功能催化剂。本研究说明了提高可充电金属电池的循环寿命的有希望的平台。

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