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首页> 外文期刊>Advanced Materials >Co Nanoislands Rooted on Co-N-C Nanosheets as Efficient Oxygen Electrocatalyst for Zn-Air Batteries
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Co Nanoislands Rooted on Co-N-C Nanosheets as Efficient Oxygen Electrocatalyst for Zn-Air Batteries

机译:钴纳米岛根植于钴-碳-碳纳米片上作为锌-空气电池的高效氧气电催化剂

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摘要

Developing non-precious-metal bifunctional oxygen reduction and evolution reaction (ORR/OER) catalysts is a major task for promoting the reaction efficiency of Zn-air batteries. Co-based catalysts have been regarded as promising ORR and OER catalysts owing to the multivalence characteristic of cobalt element. Herein, the synthesis of Co nanoislands rooted on Co-N-C nanosheets supported by carbon felts (Co/Co-N-C) is reported. Co nanosheets rooted on the carbon felt derived from electrodeposition are applied as the self-template and cobalt source. The synergistic effect of metal Co islands with OER activity and Co-N-C nanosheets with superior ORR performance leads to good bifuctional catalytic performances. Wavelet transform extended X-ray absorption fine spectroscopy and X-ray photoelectron spectroscopy certify the formation of Co (mainly Co-0) and the Co-N-C (mainly Co2+ and Co3+) structure. As the air-cathode, the assembled aqueous Zn-air battery exhibits a small charge-discharge voltage gap (0.82 V@10 mA cm(-2)) and high power density of 132 mW cm(-2), outperforming the commercial Pt/C catalyst. Additionally, the cable flexible rechargeable Zn-air battery exhibits excellent bendable and durability. Density functional theory calculation is combined with operando X-ray absorption spectroscopy to further elucidate the active sites of oxygen reactions at the Co/Co-N-C cathode in Zn-air battery.
机译:开发非贵金属双功能氧还原和放出反应(ORR / OER)催化剂是提高锌空气电池反应效率的主要任务。由于钴元素的多价特性,钴基催化剂被认为是有前途的ORR和OER催化剂。在此,报道了以碳毡(Co / Co-N-C)为支撑的以Co-N-C纳米片为根基的Co纳米岛的合成。植根于源自电沉积的碳毡上的Co纳米片被用作自模板和钴源。具有OER活性的金属Co岛和具有优异ORR性能的Co-N-C纳米片的协同效应导致良好的双向催化性能。小波变换扩展的X射线吸收精细光谱学和X射线光电子能谱证明了Co(主要是Co-0)和Co-N-C(主要是Co2 +和Co3 +)结构的形成。作为空气阴极,组装好的水性锌空气电池具有较小的充放电电压间隙(0.82 V @ 10 mA cm(-2))和132 mW cm(-2)的高功率密度,优于商用Pt / C催化剂。此外,电缆柔性可充电锌空气电池还具有出色的可弯曲性和耐用性。密度泛函理论计算与操作X射线吸收光谱法相结合,可以进一步阐明Zn-空气电池Co / Co-N-C阴极上氧反应的活性部位。

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