Li Weiping, Zhou Tianxiang, Le Zhilu, Liao Mengyin, Liu Hesheng, Na Bing, Wang Bin, Zhou Haiying, Yan Heng
Jiangxi Province Key Laboratory of Polymer Micro/Nano Manufacturing and Devices, East China University of Technology Nanchang 330013 China
Institute of Energy Conversion, Jiangxi Academy of Sciences Nanchang 330096 China
RSC Adv. 2018 Oct 16;8(62):35496-35502. doi: 10.1039/c8ra07194b. eCollection 2018 Oct 15.
The thermal treatment of bimetallic nanocatalysts plays an important role in determining their catalytic performance. Here tuning the surface oxidized metal species of bimetallic Pd-Fe electrocatalysts for the formic acid (FA) oxidation reaction is reported and a correlation between the surface oxidized metal species of the Pd-Fe nanoparticles and their catalytic activities is proposed. The structural details of the Pd-Fe/C catalysts are characterized by X-ray diffraction, X-ray photoelectron spectroscopy and high-sensitivity low-energy ion scattering (HS-LEIS). Cyclic voltammetry measurements demonstrated that the mass activity of the Pd-Fe nanoparticles with a molar ratio of Pd/Fe = 1/15 is about 7.4 times higher than that of Pd/C. This enhancement could be attributed to the synergistic effect between Pd(0) and Pd oxidized species on the surface of the Pd-Fe/C treated sample and electronic effects. This finding demonstrates the importance of surface oxidized metal species at the nanoscale in harnessing the true electrocatalytic potential of bimetallic nanoparticles and opens up strategies for the development of highly active bimetallic nanoparticles for electrochemical energy conversion.
双金属纳米催化剂的热处理在决定其催化性能方面起着重要作用。本文报道了对用于甲酸(FA)氧化反应的双金属Pd-Fe电催化剂的表面氧化金属物种进行调控,并提出了Pd-Fe纳米颗粒的表面氧化金属物种与其催化活性之间的相关性。通过X射线衍射、X射线光电子能谱和高灵敏度低能离子散射(HS-LEIS)对Pd-Fe/C催化剂的结构细节进行了表征。循环伏安法测量表明,摩尔比为Pd/Fe = 1/15的Pd-Fe纳米颗粒的质量活性比Pd/C高约7.4倍。这种增强可归因于经处理的Pd-Fe/C样品表面上Pd(0)与Pd氧化物种之间的协同效应以及电子效应。这一发现证明了纳米尺度上表面氧化金属物种在发挥双金属纳米颗粒真正电催化潜力方面的重要性,并为开发用于电化学能量转换的高活性双金属纳米颗粒开辟了策略。