Platinum nanoparticles supported on nitrogen and sulfur-doped reduced graphene oxide nanomaterial as highly active electrocatalysts for methanol oxidation

被引:83
作者
Akyildirim, Onur [1 ]
Yuksek, Haydar [2 ]
Saral, Hasan [3 ]
Ermis, Ismail [4 ]
Eren, Tanju [5 ]
Yola, Mehmet Lutfi [3 ]
机构
[1] Kafkas Univ, Dept Chem Engn, Fac Engn & Architecture, Kars, Turkey
[2] Kafkas Univ, Fac Sci & Letters, Dept Chem, Kars, Turkey
[3] Sinop Univ, Dept Met & Mat Engn, Fac Engn, Sinop, Turkey
[4] Sinop Univ, Dept Energy Syst, Fac Engn, Sinop, Turkey
[5] Pamukkale Univ, Dept Chem Engn, Fac Engn, Denizli, Turkey
关键词
CARBON-PASTE ELECTRODE; NICOTINAMIDE ADENINE-DINUCLEOTIDE; VOLTAMMETRIC SENSOR; GLASSY-CARBON; NANOCOMPOSITE; GLUTATHIONE; REDUCTION; MEDIATOR; ACID;
D O I
10.1007/s10854-016-4873-y
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A fuel cell is an electrochemical cell that converts a source fuel into an electrical current. It generates electricity inside a cell through reactions between a fuel and an oxidant, triggered in the presence of an electrolyte. Fuel cells have been attracting more and more attention in recent decades due to high-energy demands, fossil fuel depletions and environmental pollution throughout world. In this study, a facile and cost-effective catalysts have been developed on platinum nanoparticles (PtNPs) supported on nitrogen and sulfur-doped reduced graphene oxide (NSrGO). The successful synthesis of nanomaterials and the prepared glassy carbon electrode (GCE) surfaces were confirmed by transmission electron microscope (TEM), X-ray photo electron spectroscopy (XPS), scanning electron microscope (SEM) and electrochemical impedance spectroscopy (EIS). According to TEM images, the average particle sizes of PtNPs were found to be approximately 15-20 nm. The effective surface areas (ESA) of NSrGO/GCE and PtNPs/NSrGO/GCE were calculated to be 148 and 469 cm(2)/mg, respectively. The PtNPs/NSrGO/GCE also exhibited a higher peak current for methanol oxidation than those of comparable GCE and NSrGO/GCE, providing evidence for its higher electro-catalytic activity.
引用
收藏
页码:8559 / 8566
页数:8
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