Catalytic activities are often dominated by a few specific surface sites, and designing active sites is the key to realize high-performance heterogeneous catalysts. The great triumphs of modern surface science lead to reproduce catalytic reaction rates by modeling the arrangement of surface atoms with well-defined single-crystal surfaces. However, this method has limitations in the case for highly inhomogeneous atomic configurations such as on alloy nanoparticles with atomic-scale defects, where the arrangement cannot be decomposed into single crystals. Here, we propose a universal machine-learning scheme using a local similarity kernel, which allows interrogation of catalytic activities based on local atomic configurations. We then apply i...
The rapid growth of methods emerging in the past decade for synthesis of “designer” catalysts—rangin...
Computational catalyst screening has the potential to significantly accelerate heterogeneous catalys...
Site heterogeneity of metal nanocatalysts poses grand challenges for catalyst design from first prin...
A Bayesian linear regression scheme using a local structural similarity kernel as a descriptor is us...
Rational catalyst design is crucial toward achieving more energy-efficient and sustainable catalytic...
Rational catalyst design is crucial toward achieving more energy-efficient and sustainable catalytic...
Rational catalyst design is crucial toward achieving more energy-efficient and sustainable catalytic...
Rational catalyst design is crucial toward achieving more energy-efficient and sustainable catalytic...
Heterogeneous catalysis is the central pillar of chemical industry, but they are mostly developed vi...
Alloy nanocatalysts have found broad applications ranging from fuel cells to catalytic converters an...
Alloy nanocatalysts have found broad applications ranging from fuel cells to catalytic converters an...
Catalytic properties of noble-metal nanoparticles (NPs) are largely determined by their surface morp...
Physical catalysts often have multiple sites where reactions can take place. One prominent example i...
Designing heterogeneous catalysts that have improved activity, selectivity and reduced cost are the ...
Rational catalyst design is crucial toward achieving more energy-efficient and sustainable catalytic...
The rapid growth of methods emerging in the past decade for synthesis of “designer” catalysts—rangin...
Computational catalyst screening has the potential to significantly accelerate heterogeneous catalys...
Site heterogeneity of metal nanocatalysts poses grand challenges for catalyst design from first prin...
A Bayesian linear regression scheme using a local structural similarity kernel as a descriptor is us...
Rational catalyst design is crucial toward achieving more energy-efficient and sustainable catalytic...
Rational catalyst design is crucial toward achieving more energy-efficient and sustainable catalytic...
Rational catalyst design is crucial toward achieving more energy-efficient and sustainable catalytic...
Rational catalyst design is crucial toward achieving more energy-efficient and sustainable catalytic...
Heterogeneous catalysis is the central pillar of chemical industry, but they are mostly developed vi...
Alloy nanocatalysts have found broad applications ranging from fuel cells to catalytic converters an...
Alloy nanocatalysts have found broad applications ranging from fuel cells to catalytic converters an...
Catalytic properties of noble-metal nanoparticles (NPs) are largely determined by their surface morp...
Physical catalysts often have multiple sites where reactions can take place. One prominent example i...
Designing heterogeneous catalysts that have improved activity, selectivity and reduced cost are the ...
Rational catalyst design is crucial toward achieving more energy-efficient and sustainable catalytic...
The rapid growth of methods emerging in the past decade for synthesis of “designer” catalysts—rangin...
Computational catalyst screening has the potential to significantly accelerate heterogeneous catalys...
Site heterogeneity of metal nanocatalysts poses grand challenges for catalyst design from first prin...