Probing Single‐Atom Catalysts and Catalytic Reaction Processes by Shell‐Isolated Nanoparticle‐Enhanced Raman Spectroscopy

Abstract

Developing advanced characterization techniques for single‐atom catalysts (SACs) is of great significance to identify their structural and catalytic properties. Raman spectroscopy can provide molecular structure information, and thus, the technique is a promising tool for catalysis. However, its application in SACs remains a great challenge because of its low sensitivity. We develop a highly sensitive strategy that achieves the characterization of the structure of SACs and in situ monitoring of the catalytic reaction processes on them by shell‐isolated nanoparticle‐enhanced Raman spectroscopy (SHINERS) for the first time. Using the strategy, Pd SACs on different supports were identified by Raman spectroscopy and the nucleation process of Pd species from single atoms to nanoparticles was revealed. Moreover, the catalytic reaction processes of the hydrogenation of nitro compounds on Pd SACs were monitored in situ, and molecular insights were obtained to uncover the unique catalytic properties of SACs. This work provides a new spectroscopic tool for the in situ study of SACs, especially at solid–liquid interfaces.

Document Details

Document Type
Pub Defense Publication
Publication Date
Mar 17, 2021
Source ID
10.1002/ange.202100198

Entities

People

  • Bing Joe Hwang
  • Han‐long Ya
  • Hua Zhang
  • Ji Yang
  • Jian-Feng Li
  • Jie Wei
  • Si‐na Qin
  • Wei‐hsiang Huang
  • Zhong‐qun Tian

Organizations

  • Defense Advanced Research Projects Agency
  • National Natural Science Foundation of China
  • Natural Science Foundation of Fujian Province

Tags

Fields of Study

  • Chemistry

Readers

  • Nanoscale Plasmonic Nanotechnology
  • Neurodegenerative Parkinson's Disease and Rickettsial Disease handbook, including the data level of dopamine, BC, neurons, and PD.
  • Organic Chemistry

Technology Areas

  • Biotechnology