Surfactant-exfoliated 2D molybdenum disulphide (2D-MoS2): The role of surfactant upon the hydrogen evolution reaction

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Abstract

Surfactant (sodium cholate, SC) mediated liquid (aqueous) phase exfoliation is a common approach to fabricate 2D molybdenum disulphide (2D-MoS2-SC) nanosheets since it is a facile methodology producing defect free flakes with nanometer lateral sizes. The electrocatalytic behaviour of 2D-MoS2-SC towards the Hydrogen Evolution Reaction (HER) is benchmarked within acidic media and found to exhibit inferior HER activity to an equivalent mass of pristine 2D-MoS2 (2D-MoS2 produced without a surfactant), with HER onset potentials, current densities and Tafel values of -0.61 V (vs. SCE), -2.19 mA cm-2, 141 mV dec-1 and -0.42 V (vs. SCE), -4.96 mA cm-2, 94 mV dec-1 respectively. This work demonstrates that sodium cholate has a detrimental effect upon the HER activity of 2D-MoS2. Future studies that utilise 2D materials, fabricated via liquid surfactant exfoliation, should consider the role of the surfactant in the observed electrochemical responses and perform the necessary control experiments.

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De-Mello, G. B., Smith, L., Rowley-Neale, S. J., Gruber, J., Hutton, S. J., & Banks, C. E. (2017). Surfactant-exfoliated 2D molybdenum disulphide (2D-MoS2): The role of surfactant upon the hydrogen evolution reaction. RSC Advances, 7(58), 36208–36213. https://doi.org/10.1039/c7ra05085b

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