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Title: Constructing three-dimensional porous Ni/Ni₃S₂ nano-interfaces for hydrogen evolution electrocatalysis under alkaline conditions
Authors: An, Y
Huang, B 
Wang, Z
Long, X
Qiu, Y
Hu, J
Zhou, D
Lin, H
Yang, S
Issue Date: 28-Aug-2017
Source: Dalton transactions : an international journal of inorganic chemistry, 28 Aug. 2017, v. 46, no. 32, p. 10700-10706
Abstract: It is still a challenging issue to design earth-abundant electrocatalysts with low cost, high activity and long-term stability for the hydrogen evolution reaction (HER) based on water splitting in alkaline solutions. Here, we report a facile synthetic route for a three-dimensional, porous Ni/Ni₃S₂ nano-network on carbon cloth for the efficient catalysis of HER. This unique structure exposes a high proportion of Ni/Ni₃S₂ hetero-interfaces to the electrolyte, creating a synergetic effect between Ni and Ni₃S₂ that enhances HER. The synergetic effect at the interface was verified by DFT calculation and involves the interface-assisted heterolytic splitting of H₂O into OH⁻ and H⁺ and the subsequent expeditious H₂-forming reaction caused by weakened binding between Ni and H induced by the neighboring Ni₃S₂. The resulting porous network shows high HER activity in alkaline media, reaching 10 mA cm⁻² at 95 mV with a Tafel slope of 66 mV dec⁻¹. This value is much smaller than that of nickel metal, which is currently used in industry.
Publisher: Royal Society of Chemistry
Journal: Dalton transactions : an international journal of inorganic chemistry 
ISSN: 1477-9226
EISSN: 1477-9234
DOI: 10.1039/c7dt00878c
Rights: This journal is © The Royal Society of Chemistry 2017
The following publication An, Y., Huang, B., Wang, Z., Long, X., Qiu, Y., Hu, J., ... & Yang, S. (2017). Constructing three-dimensional porous Ni/Ni 3 S 2 nano-interfaces for hydrogen evolution electrocatalysis under alkaline conditions. Dalton Transactions, 46(32), 10700-10706 is available at https://doi.org/10.1039/c7dt00878c.
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