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Nanoscale tungsten nitride/nitrogen-doped carbon as an efficient non-noble metal catalyst for hydrogen and oxygen recombination at room temperature in nickel-iron batteries.


ABSTRACT: A nanoscale tungsten nitride/nitrogen-doped carbon (WN/NC) catalyst was synthesized through a facile route, and it exhibited efficient catalytic performance for hydrogen and oxygen recombination at room temperature with an average catalytic velocity of 140 μmol h-1 gcat -1 and long catalytic life of 954 660 s without decay in the catalytic performance. With the WN/NC catalyst, a nickel-iron battery could be sealed and maintenance-free, and it also exhibited low cost; thus, the nickel-iron battery can be used for large-scale energy storage systems in rural/remote areas.

SUBMITTER: Huang L 

PROVIDER: S-EPMC9087214 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Nanoscale tungsten nitride/nitrogen-doped carbon as an efficient non-noble metal catalyst for hydrogen and oxygen recombination at room temperature in nickel-iron batteries.

Huang Lanxiang L   Yang Jun J   Zhou Wanhai W   Liu Kun K   Zhu Ding D   Chen Yungui Y  

RSC advances 20181015 62


A nanoscale tungsten nitride/nitrogen-doped carbon (WN/NC) catalyst was synthesized through a facile route, and it exhibited efficient catalytic performance for hydrogen and oxygen recombination at room temperature with an average catalytic velocity of 140 μmol h<sup>-1</sup> g<sub>cat</sub> <sup>-1</sup> and long catalytic life of 954 660 s without decay in the catalytic performance. With the WN/NC catalyst, a nickel-iron battery could be sealed and maintenance-free, and it also exhibited low c  ...[more]

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