Ni3S4/NiS/rGO as a promising electrocatalyst for methanol and ethanol electro-oxidation

被引:12
作者
Azizi, Sadegh [1 ]
Askari, Mohammad Bagher [2 ]
Moghadam, Mohammad Taghi Tourchi [1 ]
Seifi, Majid [1 ]
Di Bartolomeo, Antonio [3 ,4 ]
机构
[1] Univ Guilan, Fac Sci, Dept Phys, POB 41335 1914, Rasht, Iran
[2] Grad Univ Adv Technol, Inst Sci & High Technol & Environm Sci, Dept Semicond, POB 7631818356, Kerman, Iran
[3] Univ Salerno, Dept Phys ER Caianiello, I-84084 Fisciano, Salerno, Italy
[4] Univ Salerno, Interdept Ctr NANOMATES, I-84084 Fisciano, Salerno, Italy
关键词
graphene; nanostructure; catalytic; electrochemical synthesis; ethanol; oxidation; REDUCED GRAPHENE OXIDE; FACILE SYNTHESIS; OXIDATION; PERFORMANCE; CARBON; NANOPARTICLES; NANOCATALYST; MORPHOLOGY; NICO2O4; GROWTH;
D O I
10.1088/2399-1984/acb02b
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We present a one-step hydrothermal synthesis of hybrids consisting of nickel sulfides in the form of Ni3S4-NiS (NN) and Ni3S4-NiS-rGO (NNR), i.e. with the addition of reduced graphene oxide (rGO), for application as catalysts. After accurate physical characterization and confirmation of successful synthesis, we evaluate the ability of these catalysts in the processes of methanol and ethanol oxidation. The precise electrochemical analyses show relatively good potential and excellent cyclic stability in methanol oxidation reaction (MOR) and ethanol oxidation reaction (EOR) processes. The comparison of the two catalysts shows the superiority of NNR over NN, confirming that rGO introduces a higher specific surface area and a higher electrical conductivity in the NNR structure. In the process of MOR, NNR has an oxidation peak at a current density of 55 mA cm(-2) and a peak potential of 0.54 V. In EOR, this peak is located at a current density of 11 mA cm(-2) and at a peak potential of 0.59 V. NNR has 97% and 94% stability in MOR and EOR after 1000 consecutive cycles, respectively, which are acceptable values.
引用
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页数:13
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