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Regioselective epitaxial growth of metallic heterostructures

  • Xuan Huang
  • , Jie Feng
  • , Shengnan Hu
  • , Bingyan Xu
  • , Mingsheng Hao
  • , Xiaozhi Liu
  • , Yan Wen
  • , Dong Su
  • , Yujin Ji
  • , Youyong Li
  • , Yinshi Li
  • , Yucheng Huang
  • , Ting Shan Chan
  • , Zhiwei Hu
  • , Na Tian
  • , Qi Shao
  • , Xiaoqing Huang
  • Xiamen University
  • Soochow University
  • Xi'an Jiaotong University
  • CAS - Institute of Physics
  • National Synchrotron Radiation Research Center Taiwan
  • Max Planck Institute for Chemical Physics of Solids
  • Innovation Laboratory for Sciences and Technologies of Energy Materials of Fujian Province (IKKEM)

科研成果: 期刊稿件文章同行评审

54 引用 (Scopus)

摘要

Constructing regioselective architectures in heterostructures is important for many applications; however, the targeted design of regioselective architectures is challenging due to the sophisticated processes, impurity pollution and an unclear growth mechanism. Here we successfully realized a one-pot kinetically controlled synthetic framework for constructing regioselective architectures in metallic heterostructures. The key objective was to simultaneously consider the reduction rates of metal precursors and the lattice matching relationship at heterogeneous interfaces. More importantly, this synthetic method also provided phase- and morphology-independent behaviours as foundations for choosing substrate materials, including phase regulation from Pd20Sb7 hexagonal nanoplates (HPs) to Pd8Sb3 HPs, and morphology regulation from Pd20Sb7 HPs to Pd20Sb7 rhombohedra and Pd20Sb7 nanoparticles. Consequently, the activity of regioselective epitaxially grown Pt on Pd20Sb7 HPs was greatly enhanced towards the ethanol oxidation reaction; its activity was 57 times greater than that of commercial Pt/C, and the catalyst showed increased stability (decreasing by 16.3% after 2,000 cycles) and selectivity (72.4%) compared with those of commercial Pt/C (56.0%, 18.2%). This work paves the way for the design of unconventional well-defined heterostructures for use in various applications.

源语言英语
页(从-至)1306-1315
页数10
期刊Nature Nanotechnology
19
9
DOI
出版状态已出版 - 9月 2024

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