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High-Density Cobalt Nanoparticles Encapsulated with Nitrogen-Doped Carbon Nanoshells as a Bifunctional Catalyst for Rechargeable Zinc-Air Battery

机译:氮掺杂碳纳米壳包覆的高密度钴纳米颗粒作为可充电锌空气电池的双功能催化剂

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摘要

High efficient electrocatalytic activity and strong stability to both oxygen reduction reaction (ORR) and oxygen evolution (OER) are very critical to rechargeable Zn-air battery and other renewable energy technologies. As a class of promising catalysts, the nanocoposites of transition metal nanoparticles that are encapsulated with nitrogen-doped carbon nanoshells are considered as promising substitutes to expensive precious metal based catalysts. In this work, we demonstrate the successful preparation of high-density cobalt nanoparticles encapsulated in very thin N-doped carbon nanoshells by the pyrolysis of solid state cyclen-Co-dicyandiamide complex. The morphologies and properties of products can be conveniently tuned by adjusting the pyrolysis temperature. Owing to the synergetic effect of hybrid nanostructure, the optimized Co@N-C-800 sample possesses outstanding bifunctional activity for both ORR and OER in alkaline electrolyte. Meanwhile, the corresponding rechargeable zinc-air battery that is based on Co@N-C-800 air cathode also has excellent current density, low charge-discharge voltage gap, high power density, and strong cycle stability, making it a suitable alternative to take the place of precious metal catalysts for practical utilization.
机译:高效的电催化活性以及对氧还原反应(ORR)和氧释放(OER)的强稳定性对于可再充电锌空气电池和其他可再生能源技术至关重要。作为一类有前途的催化剂,用氮掺杂的碳纳米壳封装的过渡金属纳米颗粒的纳米复合材料被认为是昂贵的贵金属基催化剂的有前途的替代品。在这项工作中,我们证明了通过固态环素-Co-双氰胺复合物的热解成功制备了封装在非常薄的N掺杂碳纳米壳中的高密度钴纳米颗粒。通过调节热解温度可以方便地调节产物的形态和性能。由于杂化纳米结构的协同作用,优化后的Co @ N-C-800样品对碱性电解质中的ORR和OER均具有出色的双功能活性。同时,相应的基于Co @ NC-800空气阴极的可再充电锌空气电池还具有出色的电流密度,低的充放电电压间隙,高的功率密度和强大的循环稳定性,使其成为采用锂离子电池的合适替代品。贵金属催化剂的实际应用场所。

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