Synergistic effect of Co–Ni co-bridging with MoS2 nanosheets for enhanced electrocatalytic hydrogen evolution reactions |
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Authors: | Ammar Bin Yousaf Muhammad Imran Muhammad Farooq Peter Kasak |
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Affiliation: | Center for Advanced Materials, Qatar University, Doha 2713 Qatar.; Hefei National Laboratory for Physical Sciences at Microscale, University of Science and Technology of China, Hefei Anhui 230026 PR China.; Department of Chemistry, University of Management and Technology, Lahore 54000 Pakistan |
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Abstract: | The depletion of fossil fuels and associated environmental problems have drawn our attention to renewable energy resources in order to meet the global energy demand. Electrocatalytic hydrogen evolution has been considered a potential energy solution due of its high energy density and environment friendly technology. Herein, we have successfully synthesized a noble-metal-free Co–Ni/MoS2 nanocomposite for enhanced electrocatalytic hydrogen evolution. The nanocomposite has been well characterized using HRTEM, elemental mapping, XRD, and XPS analysis. The as-synthesized nanocomposite exhibits a much smaller onset potential and better current density than those of Co–MoS2, Ni–MoS2 and MoS2, with a Tafel value of 49 mV dec−1, which is comparable to that of a commercial Pt/C catalyst. The synergistic effect and interfacial interaction of Co–Ni bimetallic nanoparticles enhances the intrinsic modulation in the electronic structure resulting in an improved HER performance. Moreover, the electrochemical impedance spectroscopic results suggest smaller resistance values for the Co–Ni/MoS2 nanocomposite, compared to those for the charge transfer of bare nanosheets, which increase the faradaic process and in turn enhance the HER kinetics for a better performance. Our as-synthesized Co–Ni/MoS2 nanocomposite holds great potential for the future synthesis of noble-metal-free catalysts.A noble-metal-free Co–Ni/MoS2 nanocomposite was synthesized, which showed enhanced electrocatalytic hydrogen evolution performance. |
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