Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4766778 | Electrochimica Acta | 2017 | 41 Pages |
Abstract
We report a novel and simple approach to synthesis highly efficient and stable electrochemical catalyst of Ni-(MoS2/GO) composite coatings by electrodeposition from aqueous solution with the nickel sulphamate precursor. Depositing under supergravity fields has been applied to scatter more MoS2/GO hybrids in the coatings and decrease the size of nickel particles as far as possible and increase large amount of exposed active sites. In 1.0Â M NaOH solution, Ni-(MoS2/GO) only needs overpotentials as low as â33Â mV and â132Â mV at a current density of â10Â mAÂ cmâ2 and â100Â mAÂ cmâ2, respectively. The behavior of Ni-(MoS2/GO) exceeds most of the same reported HER catalysts in previously literature. In addition, we also synthesized Ni-MoS2, Ni-GO and pure Ni catalysts use the same method. The results show that Ni-(MoS2/GO) exhibited better HER activity at a current density of â100Â mAÂ cmâ2 than these catalysts. In the future research field of HER catalysis materials, the development of this material may be not limited to nickel based materials, also will be used in Fe, Co and other non noble metal based materials, outlining a general approach for the synthesis of nanostructured M-(MoS2/GO) as a class of new catalyst with efficient HER activity.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Chemical Engineering (General)
Authors
Xucai Yin, Gang Sun, Ailong Song, Lixin Wang, Yazhou Wang, Haifeng Dong, Guangjie Shao,