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Highly crumpled nanocarbons as efficient metal-free electrocatalysts for zinc-air batteries

机译:高度皱巴巴的nanocarbons一样有效不含金属的electrocatalysts为锌空气电池

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摘要

The rational design of an efficient and robust oxygen reduction reaction (ORR) electrocatalyst is vital for energy conversion and storage systems, especially for metal-air batteries. Herein, we report a highly nanocrumpled and nitrogen, phosphorus-codoped nanocarbon (NC-NPC) synthesized by direct pyrolysis of melamine and triphenylphosphine. With the rich nano-crumpled structure and codoping of heteroatoms, this low-cost catalyst exhibits an excellent ORR performance, and possesses a half-wave potential of 0.84 V vs. RHE, a small Tafel slope of 70.2 mV dec(-1), and good electrocatalytic stability. More importantly, it can also be applied in zinc-air batteries as an efficient electrode which delivers an open-circle voltage of 1.38 V, a specific capacity of 782 mA h g(Zn)(-1), and a long cycling life of 210 h, superior to the commercial Pt/C catalyst.
机译:合理设计一个高效和健壮氧还原反应(ORR) electrocatalyst是至关重要的能量转换和存储系统,特别是金属气质电池。在此,我们报告一个高度nanocrumpled和氮、phosphorus-codoped nanocarbon (NC-NPC)合成三聚氰胺的直接热解和三苯基膦。的结构和共掺杂原子,这低成本的催化剂表现出一个优秀的奥尔性能,具有半波的潜力0.84 V和流值,一个小塔费尔坡70.2 mV12月(1),和良好的electrocatalytic稳定。更重要的是,它也可以应用于锌空气电池作为一种高效的电极这提供了一种开环电压为1.38 V,一个特定容量782毫安h g(锌)(1),和一个循环寿命长210 h,优于商业Pt / C催化剂。

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