Interface engineering of a CeO<sub>2</sub>-Cu<sub>3</sub>P nanoarray for efficient alkaline hydrogen evolution.
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| Abstract |    :  
                  It is of great importance to design and develop highly active electrocatalysts for the hydrogen evolution reaction (HER) under alkaline conditions. In this work, we report the development of a CeO2-Cu3P nanoarray supported on nickel foam (CeO2-Cu3P/NF) as an excellent HER catalyst with the demand of an overpotential of only 148 mV to deliver a geometrical catalytic current density of 20 mA cm-2 in 1.0 M KOH. Remarkably, this catalyst also shows strong long-term electrochemical durability for at least 100 h with nearly 100% Faradaic efficiency. Density functional theory calculations reveal that the CeO2-Cu3P/NF hybrid has a lower water dissociation energy and a more thermo-neutral hydrogen adsorption free energy.  | 
        
| Year of Publication |    :  
                  2018 
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| Journal |    :  
                  Nanoscale 
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| Date Published |    :  
                  2018 
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| ISSN Number |    :  
                  2040-3364 
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| URL |    :  
                  http://dx.doi.org/10.1039/c7nr08472b 
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| DOI |    :  
                  10.1039/c7nr08472b 
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| Short Title |    :  
                  Nanoscale 
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