This work aims to address the challenge of developing interpretable ML-based models when access to large-scale computational resources is limited. Using CoMoFeNiCu high-entropy alloy catalysts as an example, we present a cost-effective workflow that synergistically combines descriptor-based approaches, machine learning-based force fields, and low-cost density functional theory (DFT) calculations to predict high-quality adsorption energies for H, N, and NHx (x = 1, 2, and 3) adsorbates. This is achieved using three specific modifications to typical DFT workflows including: (1) using a sequential optimization protocol, (2) developing a new geometry-based descriptor, and (3) repurposing the already-available low-cost DFT optimization trajector...
Adsorption energies on surfaces are excellent descriptors of their chemical properties, including th...
Computation of adsorption and transition-state energies for a large number of surface intermediates ...
The process employed to discover new materials for specific applications typically utilizes screenin...
Heterogeneous catalysis is the central pillar of chemical industry, but they are mostly developed vi...
Computational catalyst screening has the potential to significantly accelerate heterogeneous catalys...
Computational screening for new and improved catalyst materials relies on accurate and low-cost pred...
Heterogeneous catalysts are rather complex materials that come in many classes (e.g., metals, oxides...
Computational screening for new and improved catalyst materials relies on accurate and low-cost pred...
Abstract Computational catalysis is playing an increasingly significant role in the design of cataly...
The expense of quantum chemistry calculations significantly hinders endeavors to search through dive...
A computational approach to judiciously predict high-entropy alloys (HEAs) as an efficient and susta...
In the last 50 years, increasing human populations have resulted in three times more fossil fuels co...
High-entropy alloys (HEAs) have emerged as promising electrocatalysts due to their high tunability. ...
Several screening studies identifying new catalysts for different reactions have been reported over ...
Designing heterogeneous catalysts that have improved activity, selectivity and reduced cost are the ...
Adsorption energies on surfaces are excellent descriptors of their chemical properties, including th...
Computation of adsorption and transition-state energies for a large number of surface intermediates ...
The process employed to discover new materials for specific applications typically utilizes screenin...
Heterogeneous catalysis is the central pillar of chemical industry, but they are mostly developed vi...
Computational catalyst screening has the potential to significantly accelerate heterogeneous catalys...
Computational screening for new and improved catalyst materials relies on accurate and low-cost pred...
Heterogeneous catalysts are rather complex materials that come in many classes (e.g., metals, oxides...
Computational screening for new and improved catalyst materials relies on accurate and low-cost pred...
Abstract Computational catalysis is playing an increasingly significant role in the design of cataly...
The expense of quantum chemistry calculations significantly hinders endeavors to search through dive...
A computational approach to judiciously predict high-entropy alloys (HEAs) as an efficient and susta...
In the last 50 years, increasing human populations have resulted in three times more fossil fuels co...
High-entropy alloys (HEAs) have emerged as promising electrocatalysts due to their high tunability. ...
Several screening studies identifying new catalysts for different reactions have been reported over ...
Designing heterogeneous catalysts that have improved activity, selectivity and reduced cost are the ...
Adsorption energies on surfaces are excellent descriptors of their chemical properties, including th...
Computation of adsorption and transition-state energies for a large number of surface intermediates ...
The process employed to discover new materials for specific applications typically utilizes screenin...