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首页> 外文期刊>ACS nano >Single-Atom Pt Stabilized on One-Dimensional Nanostructure Support via Carbon Nitride/SnO2 Heterojunction Trapping
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Single-Atom Pt Stabilized on One-Dimensional Nanostructure Support via Carbon Nitride/SnO2 Heterojunction Trapping

机译:通过氮化物/ SnO2异质结诱捕在一维纳米结构支撑件上稳定单颗粒PT

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摘要

Catalysis with single-atom catalysts (SACs) exhibits outstanding reactivity and selectivity. However, fabrication of supports for the single atoms with structural versatility remains a challenge to be overcome, for further steps toward catalytic activity augmentation. Here, we demonstrate an effective synthetic approach for a Pt SAC stabilized on a controllable one-dimensional (1D) metal oxide nano-heterostructure support, by trapping the single atoms at heterojunctions of a carbon nitride/SnO_(2) heterostructure. With the ultrahigh specific surface area (54.29 m~(2) g~(–1)) of the nanostructure, we obtained maximized catalytic active sites, as well as further catalytic enhancement achieved with the heterojunction between carbon nitride and SnO_(2). X-ray absorption fine structure analysis and HAADF-STEM analysis reveal a homogeneous atomic dispersion of Pt species between carbon nitride and SnO_(2) nanograins. This Pt SAC system with the 1D nano-heterostructure support exhibits high sensitivity and selectivity toward detection of formaldehyde gas among state-of-the-art gas sensors. Further ex situ TEM analysis confirms excellent thermal stability and sinter resistance of the heterojunction-immobilized Pt single atoms.
机译:用单原子催化剂(囊)的催化表现出出色的反应性和选择性。然而,对于具有结构通用性的单个原子的支撑件的制备仍然是待克服的挑战,以促进催化活性增强。在这里,我们通过在氮化物/ SnO_(2)异质结构的异质结的单个原子中,证明了一种有效的合成方法,用于稳定在可控一维(1D)金属氧化物纳米异质结构载体上。利用纳米结构的超高比表面积(54.29m〜(2)G〜(-1)),我们获得最大化的催化活性位点,以及通过碳氮化物与SnO_(2)之间的异质结来实现的进一步催化增强。 X射线吸收细结构分析和Haadf-STEM分析显示PT物种在氮化物和SnO_(2)纳米之间的均匀原子分散体。该PT SAC系统具有1D纳米异质结构支持,对最先进的气体传感器之间的甲醛气体具有高灵敏度和选择性。进一步 Ex原位TEM分析证实了异质固定的PT单原子的优异的热稳定性和烧结抗性。

著录项

  • 来源
    《ACS nano》 |2020年第9期|共12页
  • 作者单位

    Department of Materials Science and Engineering Korea Advanced Institute of Science and Technology;

    School of Materials Science and Engineering Gwangju Institute of Science and Technology (GIST);

    Department of Materials Science and Engineering Korea Advanced Institute of Science and Technology;

    Department of Materials Science and Engineering Korea Advanced Institute of Science and Technology;

    Department of Materials Science and Engineering Korea Advanced Institute of Science and Technology;

    Department of Materials Science and Engineering Korea Advanced Institute of Science and Technology;

    Department of Materials Science and Engineering Korea Advanced Institute of Science and Technology;

    Department of Materials Science and Engineering Korea Advanced Institute of Science and Technology;

    Department of Materials Science and Engineering Korea Advanced Institute of Science and Technology;

    School of Materials Science and Engineering Gwangju Institute of Science and Technology (GIST);

    Department of Materials Science and Engineering Korea Advanced Institute of Science and Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    single-atom catalysts; one-dimensional nanostructure; heterostructure; carbon nitride; metal oxides; gas sensor;

    机译:单颗粒催化剂;一维纳米结构;异质结构;碳氮化物;金属氧化物;气体传感器;

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