In Situ Visualization of Lattice‐Coherent Phase Oscillations and Active Brownian Motion of a Copper Catalyst During Hydrogen Oxidation
Abstract
Abstract Structural dynamics govern the catalytic activity of metal nanoparticles (NPs), yet their atomic‐scale mechanisms remain unclear. Using in situ transmission electron microscopy, we reveal redox‐driven lattice‐coherent Cu↔Cu 2 O phase oscillations in individual Cu NPs during hydrogen oxidation conditions. These oscillations generate active Brownian particles, wherein asymmetric H 2 oxidation leads to directional motion that results in particle collisions and sintering. Crucially, the same active Brownian motion also triggers particle splitting, counteracting surface area loss and deactivation. Such active matter behavior arises from the formation of a head–tail morphology at critical H 2 :O 2 ratios (e.g., 5:1), featuring a metallic‐rich head and an oxide‐dominated tail, with their volumetric balance dynamically shifting through competitive oxidation‐reduction cycles. Quantitative analysis establishes a direct correlation between migration velocity and redox dynamics, revealing that the oxidation process significantly enhances particle mobility while the followed reduction process slows the velocity. Molecular dynamics (MD) simulations demonstrate that particle elongation and oxide tail fragmentation, accompanying particle migration, can be explained by asymmetric adhesion forces between the metallic/oxide phases and the silicon nitride support, alongside the redox reactions occurring on the particles. This work provides atomic‐scale insights into catalyst dynamics under operando redox conditions, offering foundational knowledge for designing stable, high‐performance catalytic systems.
Article Details
Authors (11)
Yongzhao Wang
Chao Zhao
Shanghai Institute of Measurement and Testing Technology, 1500 Zhang-Heng Road, Shanghai 201203, P.R. China
Panpan Liu
Shengnan Yue
Yuan Wen
Zhaoying Wang
Key Laboratory of Mass Spectrometry Imaging and Metabolomics (Minzu University of China), State Ethnic Affairs Commission, Center for Imaging and Systems Biology, College of Life and Environmental Sciences
Tongtong Gao
Electron Microscopy Center Qingyuan Innovation Laboratory Quanzhou 362801 China
Praveen Chandramathy Surendran
International School of Photonics Cochin University of Science and Technology Cochin 682022 India
Travis Jones
Department of Inorganic Chemistry, Fritz-Haber-Institute of the Max-Planck-Society 3 , Berlin,
Feng Ding
Xing Huang