错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Two-dimensional crystalline platinum oxide

  • Jun Cai,
  • Liyang Wei,
  • Jian Liu,
  • Chaowu Xue,
  • Zhaoxi Chen,
  • Yuxiong Hu,
  • Yijing Zang,
  • Meixiao Wang,
  • Wujun Shi,
  • Tian Qin,
  • Hui Zhang,
  • Liwei Chen,
  • Xi Liu,
  • Marc-Georg Willinger,
  • Peijun Hu,
  • Kaihui Liu,
  • Bo Yang,
  • Zhongkai Liu,
  • Zhi Liu,
  • Zhu-Jun Wang

摘要

Platinum (Pt) oxides are vital catalysts in numerous reactions, but research indicates that they decompose at high temperatures, limiting their use in high-temperature applications. In this study, we identify a two-dimensional (2D) crystalline Pt oxide with remarkable thermal stability (1,200 K under nitrogen dioxide) using a suite of in situ methods. This 2D Pt oxide, characterized by a honeycomb lattice of Pt atoms encased between dual oxygen layers forming a six-pointed star structure, exhibits minimized in-plane stress and enhanced vertical bonding due to its unique structure, as revealed by theoretical simulations. These features contribute to its high thermal stability. Multiscale in situ observations trace the formation of this 2D Pt oxide from α-PtO2, providing insights into its formation mechanism from the atomic to the millimetre scale. This 2D Pt oxide with outstanding thermal stability and distinct surface electronic structure subverts the previously held notion that Pt oxides do not exist at high temperatures and can also present unique catalytic capabilities. This work expands our understanding of Pt oxidation species and sheds light on the oxidative and catalytic behaviours of Pt oxide in high-temperature settings.