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PtNi and PtMo nanoparticles as efficient catalysts using TEA-PS.BF4 ionic liquid as electrolyte towards HER

机译:使用TEA-PS.BF4离子液体作为HER的电解质,PtNi和PtMo纳米颗粒可作为高效催化剂

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Carbon-supported bimetallic nanoparticles, PtNi/C and PtMo/C, were synthesized using the borohydride reduction method and were tested as cathode in the hydrogen evolution reaction (HER) employing acid aqueous solution of 3-triethylammonium-propanesulfonic acid tetrafluoroborate (TEA-PS.BF4) ionic liquid as the electrolyte. For comparison a commercial carbon-supported Pt nanoparticles (Pt/C) has been tested. The morphology, composition and structure of the carbon-supported nanoparticles were characterized by EDX, XRD, and TEM. The results obtained by chronoamperometry, Tafel plots and electrochemical impedance spectroscopy (EIS) exhibited an excellent catalytic effect and the same kinetics mechanism for all carbon-supported nanoparticles in HER studied. Results of Tafel analysis showed that the HER rate determining step is the Volmer Heyrovsky mechanism. In the temperature range 25-80 degrees C, the PtNi/C and PtMo/C cathodes presented lower activation energy and higher current density than system using the Pt/C cathode. The PtMo/C cathode improves charge transfer kinetics and hydrogen adsorption, while the PtNi/C cathode facilitates the desorption step. These results demonstrate that the carbon supported bimetallic nanoparticles PtNi/C and PtMo/C are responsible for increasing the catalytic performances of the HER when TEA-PS.BF4 aqueous solution is employed as electrolyte. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用硼氢化物还原法合成了碳载双金属纳米粒子PtNi / C和PtMo / C,并使用3-三乙基铵-丙烷磺酸四氟硼酸的酸性水溶液(TEA-PS)在制氢反应(HER)中作为阴极进行了测试.BF4)离子液体作为电解质。为了进行比较,已经测试了商业碳载Pt纳米颗粒(Pt / C)。用EDX,XRD和TEM表征了碳载纳米颗粒的形貌,组成和结构。通过计时安培法,Tafel图和电化学阻抗谱(EIS)获得的结果显示出优异的催化效果,并且在HER中对所有碳载纳米颗粒具有相同的动力学机理。 Tafel分析的结果表明,HER速率确定步骤是Volmer Heyrovsky机制。在25-80摄氏度的温度范围内,PtNi / C和PtMo / C阴极比使用Pt / C阴极的系统具有更低的活化能和更高的电流密度。 PtMo / C阴极改善了电荷转移动力学和氢吸附,而PtNi / C阴极促进了解吸步骤。这些结果表明,当使用TEA-PS.BF4水溶液作为电解质时,碳负载的双金属纳米粒子PtNi / C和PtMo / C有助于提高HER的催化性能。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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