Understanding the performance of subnanometer catalysts and how catalyst treatment and exposure to spectroscopic probe molecules change the structure requires accurate structure determination under working conditions. Experiments lack simultaneous temporal and spatial resolution and could alter the structure, and similar challenges hinder first-principles calculations from answering these questions. Here, we introduce a multiscale modeling framework to follow the evolution of subnanometer clusters at experimentally relevant time scales. We demonstrate its feasibility on Pd adsorbed on CeO2(111) at various catalyst loadings, temperatures, and exposures to CO. We show that sintering occurs in seconds even at room temperature and is mainly dri...
Nanometer and subnanometer particles and films are becoming an essential and integral part of new t...
Understanding the behavior and dynamic structural transformation of subnanometric metal species unde...
We employ a multiscale modeling approach to study the surface structure and composition of a Pd(100)...
Understanding the performance of subnanometer catalysts and how catalyst treatment and exposure to s...
Subnanometer catalysts offer high noble metal utilization and superior performance for several react...
Single-atom catalysts (SACs) minimize noble metal utilization and can alter the activity and selecti...
Dynamic restructuring of bimetallic catalysts plays a crucial role in their catalytic activity and s...
A combination of scanning tunneling microscopy, subtractively normalized interfacial Fourier transfo...
Scaling relationships in catalysis impose fundamental limitations on the catalyst maximal performanc...
Scaling relationships in catalysis impose fundamental limitations on the catalyst maximal performanc...
Interactions between catalytically active metal particles and reactant gases depend strongly on the ...
Almost two centuries after the word “catalysis” was first introduced by Berzelius in 1835, the field...
Carbon monoxide adsorption on Pd(111) and Pd nanoparticles supported by Al2O3/NiAl(110) was examined...
Nanometer and subnanometer particles and films are becoming an essential and integral part of new t...
Understanding the behavior and dynamic structural transformation of subnanometric metal species unde...
We employ a multiscale modeling approach to study the surface structure and composition of a Pd(100)...
Understanding the performance of subnanometer catalysts and how catalyst treatment and exposure to s...
Subnanometer catalysts offer high noble metal utilization and superior performance for several react...
Single-atom catalysts (SACs) minimize noble metal utilization and can alter the activity and selecti...
Dynamic restructuring of bimetallic catalysts plays a crucial role in their catalytic activity and s...
A combination of scanning tunneling microscopy, subtractively normalized interfacial Fourier transfo...
Scaling relationships in catalysis impose fundamental limitations on the catalyst maximal performanc...
Scaling relationships in catalysis impose fundamental limitations on the catalyst maximal performanc...
Interactions between catalytically active metal particles and reactant gases depend strongly on the ...
Almost two centuries after the word “catalysis” was first introduced by Berzelius in 1835, the field...
Carbon monoxide adsorption on Pd(111) and Pd nanoparticles supported by Al2O3/NiAl(110) was examined...
Nanometer and subnanometer particles and films are becoming an essential and integral part of new t...
Understanding the behavior and dynamic structural transformation of subnanometric metal species unde...
We employ a multiscale modeling approach to study the surface structure and composition of a Pd(100)...