Precise synthetic control of exclusive ligand effect boosts oxygen reduction catalysis

被引:0
|
作者
Lu Tao
Kai Wang
Fan Lv
Hongtian Mi
Fangxu Lin
Heng Luo
Hongyu Guo
Qinghua Zhang
Lin Gu
Mingchuan Luo
Shaojun Guo
机构
[1] Peking University,School of Materials Science and Engineering
[2] University of Science and Technology Beijing,School of Materials Science and Engineering
[3] Chinese Academy of Sciences,Beijing National Laboratory for Condensed Matter and Institute of Physics
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Ligand effect, induced by charge transfer between catalytic surface and substrate in core/shell structure, was widely proved to benefit Pt-catalyzed oxygen reduction reaction by tuning the position of d-band center of Pt theoretically. However, ligand effect is always convoluted by strain effect in real core/shell nanostructure; therefore, it remains experimentally unknown whether and how much the ligand effect solely contributes electrocatalytic activity improvements. Herein, we report precise synthesis of a kind of Pd3Ru1/Pt core/shell nanoplates with exclusive ligand effect for oxygen reduction reaction. Layer-by-layer growth of Pt overlayers onto Pd3Ru1 nanoplates can guarantee no lattice mismatch between core and shell because the well-designed Pd3Ru1 has the same lattice parameters as Pt. Electron transfer, due to the exclusive ligand effect, from Pd3Ru1 to Pt leads to a downshift of d-band center of Pt. The optimal Pd3Ru1/Pt1-2L nanoplates achieve excellent activity and stability for oxygen reduction reaction in alkaline/acid electrolyte.
引用
收藏
相关论文
共 50 条
  • [21] Altering Ligand Fields in Single-Atom Sites through Second-Shell Anion Modulation Boosts the Oxygen Reduction Reaction
    Qin, Jiayi
    Liu, Hui
    Zou, Peichao
    Zhang, Rui
    Wang, Chunyang
    Xin, Huolin L.
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2022, 144 (05) : 2197 - 2207
  • [22] Synthetic Control of FePtM Nanorods (M = Cu, Ni) To Enhance the Oxygen Reduction Reaction
    Zhu, Huiyuan
    Zhang, Sen
    Guo, Shaojun
    Su, Dong
    Sun, Shouheng
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2013, 135 (19) : 7130 - 7133
  • [23] 3D star-like atypical hybrid MOF derived single-atom catalyst boosts oxygen reduction catalysis
    Lei Zhou
    Peng Zhou
    Yelong Zhang
    Bingyao Liu
    Peng Gao
    Shaojun Guo
    Journal of Energy Chemistry, 2021, 55 (04) : 355 - 360
  • [24] 3D star-like atypical hybrid MOF derived single-atom catalyst boosts oxygen reduction catalysis
    Zhou, Lei
    Zhou, Peng
    Zhang, Yelong
    Liu, Bingyao
    Gao, Peng
    Guo, Shaojun
    JOURNAL OF ENERGY CHEMISTRY, 2021, 55 : 355 - 360
  • [26] Engineering Pt Nanoparticles onto Resin-Derived Iron and Nitrogen Co-Doped Porous Carbon Nanostructure Boosts Oxygen Reduction Catalysis
    Liao, Wei
    Zhou, Shangyan
    Wang, Zhengcheng
    Liu, Fei
    Pan, Hongyan
    Xie, Tian
    Wang, Qingmei
    CHEMCATCHEM, 2021, 13 (23) : 4925 - 4930
  • [27] Configuration Control in the Synthesis of Homo- and Heteroleptic Bis(oxazolinylphenolato/thiazolinylphenolato) Chelate Ligand Complexes of Oxorhenium(V): Isomer Effect on Ancillary Ligand Exchange Dynamics and Implications for Perchlorate Reduction Catalysis
    Liu, Jinyong
    Wu, Dimao
    Su, Xiaoge
    Han, Mengwei
    Kimura, Susana Y.
    Gray, Danielle L.
    Shapley, John R.
    Abu-Omar, Mandi M.
    Werth, Charles J.
    Strathmann, Timothy J.
    INORGANIC CHEMISTRY, 2016, 55 (05) : 2597 - 2611
  • [28] Truncated palladium nanocubes: Synthesis and the effect of OH- concentration on their catalysis of the alkaline oxygen reduction reaction
    Huang, Kun-Lung
    Liu, Zhe-Ting
    Lee, Chien-Liang
    ELECTROCHIMICA ACTA, 2015, 157 : 78 - 87
  • [29] Effect of cation vacancies in nonstoichiometric (LaMn)1-xO3 on oxygen reduction reaction catalysis
    Wang, Wencong
    Liu, Wei
    Kamiko, Masao
    Yagi, Shunsuke
    JOURNAL OF ALLOYS AND COMPOUNDS, 2023, 946
  • [30] Altering the spin state of Fe-N-C through ligand field modulation of single-atom sites boosts the oxygen reduction reaction
    Xue, Dongping
    Yuan, Pengfei
    Jiang, Su
    Wei, Yifan
    Zhou, Ying
    Dong, Chung-Li
    Yan, Wenfu
    Mu, Shichun
    Zhang, Jia-Nan
    NANO ENERGY, 2023, 105