Anchoring zero valence single atoms of nickel and iron on graphdiyne for hydrogen evolution

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Abstract

Electrocatalysis by atomic catalysts is a major focus of chemical and energy conversion effort. Although transition-metal-based bulk electrocatalysts for electrochemical application on energy conversion processes have been reported frequently, anchoring the stable transition-metal atoms (e.g. nickel and iron) still remains a practical challenge. Here we report a strategy for fabrication of ACs comprising only isolated nickel/iron atoms anchored on graphdiyne. Our findings identify the very narrow size distributions of both nickel (1.23 Å) and iron (1.02 Å), typical sizes of single-atom nickel and iron. The precision of this method motivates us to develop a general approach in the field of single-atom transition-metal catalysis. Such atomic catalysts have high catalytic activity and stability for hydrogen evolution reactions.

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Xue, Y., Huang, B., Yi, Y., Guo, Y., Zuo, Z., Li, Y., … Li, Y. (2018). Anchoring zero valence single atoms of nickel and iron on graphdiyne for hydrogen evolution. Nature Communications , 9(1). https://doi.org/10.1038/s41467-018-03896-4

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