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ZIF-67-derived N-doped double layer carbon cage as efficient catalyst for oxygen reduction reaction

机译:ZIF-67衍生的N掺杂双层碳笼作为氧还原反应的高效催化剂

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摘要

The slow kinetic of oxygen reduction reaction (ORR) hampers the practical application of energy conversion devices, such as fuel cells, metal-air batteries. Here, an efficient ORR electrocatalyst consists of Co, Ni co-decorated nitrogen-doped double shell hollow carbon cage (Ni-Co@NHC) was fabricated by pyrolyzing Ni-doped polydopamine wrapped ZIF-67. During the preparation, polydopamine served as a protective layer can effectively prevent the aggregation of Co and Ni nanoparticles during the pyrolysis process, and at the same time forming a carbon layer to grow a double layer carbon cage. This unique hollow structure endows the catalyst with a high specific surface area as well as more exposed active sites. Also benefited from the synergistic effect between Ni and Co nanoparticles, the Ni-Co@NHC catalyst leads to an outstanding ORR performance of half-wave potential (E (1/2), 0.862 V), outperforms that of commercial Pt/C catalyst. Additionally, when Ni-Co@NHC was used in the cathode for the zinc-air battery, the cell exhibits high power density (108 mW cm(-2)) and high specific capacity (806 mAh g(-1)) at 20 mA cm(-2) outperforming Pt/C. This work offers a promising design strategy for the development of high-performance ORR electrocatalysts.
机译:氧还原反应(ORR)动力学缓慢,阻碍了燃料电池、金属空气电池等能量转换器件的实际应用。本文采用热解Ni掺杂聚多巴胺包裹的ZIF-67制备了一种由Co、Ni共修饰氮掺杂双壳层空心碳笼(Ni-Co@NHC)组成的高效ORR电催化剂。在制备过程中,聚多巴胺作为保护层可以有效防止Co和Ni纳米颗粒在热解过程中的聚集,同时形成碳层以生长双层碳笼。这种独特的中空结构使催化剂具有较高的比表面积以及更多的暴露活性位点。得益于Ni和Co纳米颗粒的协同作用,Ni-Co@NHC催化剂具有优异的半波电位(E(1/2),0.862 V)的ORR性能,优于商业Pt/C催化剂。此外,当镍Co@NHC用于锌空气电池的正极时,电池在20 mA cm(-2)下表现出高功率密度(108 mW cm(-2))和高比容量(806 mAh g(-1)),优于Pt/C。本研究为开发高性能ORR电催化剂提供了一种很有前途的设计策略。

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