Single-atom catalysts (SACs) minimize noble metal utilization and can alter the activity and selectivity of supported metal nanoparticles. However, the morphology of active centers, including single atoms and subnanometer clusters of a few atoms, remains elusive due to experimental challenges. The computational cost to describe numerous cluster shapes and sizes makes direct first-principles calculations impractical. We present a computational framework to enable structure determination for single-atom and subnanometer cluster catalysts. As a case study, we obtained the low-energy structures of Pdn (n = 1-21) clusters supported on CeO2(111), which are critical components of automobile three-way catalysts. Trained on density functional theory...
This thesis presents computational studies of the geometric and electronic structures and energetic ...
The nature of atomic clusters has increasingly attracted the attention of researchers over the last ...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine‐tu...
Single-atom catalysts (SACs) minimize noble metal utilization and can alter the activity and selecti...
Metal sub-nano clusters are important materials for catalysis of chemical reactions such as dehydrog...
Subnanometer catalysts offer high noble metal utilization and superior performance for several react...
Almost two centuries after the word “catalysis” was first introduced by Berzelius in 1835, the field...
Recently, a new class of catalysts, called single-atom alloy (SAA), has been discovered, synthesized...
Reactivity studies on catalytic transition metal clusters are usually performed on a single global m...
Transition metal particles dispersed on oxide supports are used as heterogeneous catalysts in numero...
Metal clusters have been used in catalysis for a long time, even in industrial production protocols,...
To contribute to the discussion of the high activity and reactivity of Au–Pd system, we have adopted...
Nanoclusters offer unique physical and chemical behaviour, with the possibility of fine-tuning size ...
Reactivity studies on catalytic transition metal clusters are usually performed on a single global m...
Understanding the performance of subnanometer catalysts and how catalyst treatment and exposure to s...
This thesis presents computational studies of the geometric and electronic structures and energetic ...
The nature of atomic clusters has increasingly attracted the attention of researchers over the last ...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine‐tu...
Single-atom catalysts (SACs) minimize noble metal utilization and can alter the activity and selecti...
Metal sub-nano clusters are important materials for catalysis of chemical reactions such as dehydrog...
Subnanometer catalysts offer high noble metal utilization and superior performance for several react...
Almost two centuries after the word “catalysis” was first introduced by Berzelius in 1835, the field...
Recently, a new class of catalysts, called single-atom alloy (SAA), has been discovered, synthesized...
Reactivity studies on catalytic transition metal clusters are usually performed on a single global m...
Transition metal particles dispersed on oxide supports are used as heterogeneous catalysts in numero...
Metal clusters have been used in catalysis for a long time, even in industrial production protocols,...
To contribute to the discussion of the high activity and reactivity of Au–Pd system, we have adopted...
Nanoclusters offer unique physical and chemical behaviour, with the possibility of fine-tuning size ...
Reactivity studies on catalytic transition metal clusters are usually performed on a single global m...
Understanding the performance of subnanometer catalysts and how catalyst treatment and exposure to s...
This thesis presents computational studies of the geometric and electronic structures and energetic ...
The nature of atomic clusters has increasingly attracted the attention of researchers over the last ...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine‐tu...