The calculation of redox potentials involves large energetic terms arising from gas phase ionization energies, thermodynamic contributions, and solvation energies of the reduced and oxidized species. In this work we study the performance of a wide range of wave function and density functional theory methods for the prediction of ionization energies and aqueous one-electron oxidation potentials of a set of 19 organic molecules. Emphasis is placed on evaluating methods that employ the computationally efficient local pair natural orbital (LPNO) approach, as well as several implementations of coupled cluster theory and explicitly correlated F12 methods. The electronic energies are combined with implicit solvation models for the solvation energi...
A set of mathematical expressions to predict redox potentials and frontier orbital energy levels for...
High-throughput computational screening (HTCS) is an effective tool to accelerate the discovery of a...
High-throughput computational screening (HTCS) is an effective tool to accelerate the discovery of a...
The calculation of molecular redox potentials in aqueous solution presents a challenge to quantum ch...
Quantum chemical implicit solvent models are used widely to estimate aqueous redox potentials. We co...
First principles simulations were used to predict aqueous one-electron oxidation potentials (E-ox) a...
A simple computational approach for predicting ground-state reduction potentials based upon gas phas...
A simple computational approach for predicting ground-state reduction potentials based upon gas phas...
Quantitative prediction of the energetics of redox half-reactions is still a challenge for modern co...
Discovering new materials for energy storage requires reliable and efficient protocols for predictin...
Using many-body perturbation theory within a G0W0 approximation, with a plane wave basis set and usi...
We describe and evaluate a method for computationally predicting reduction potentials of a diverse g...
CONSPECTUS: All-atom methods treat solute and solvent at the same level of electronic structure theo...
High-throughput computational screening (HTCS) is a powerful approach for the rational and time-effi...
Using many-body perturbation theory within a G 0 W 0 approximation, with a plane wave basis set and ...
A set of mathematical expressions to predict redox potentials and frontier orbital energy levels for...
High-throughput computational screening (HTCS) is an effective tool to accelerate the discovery of a...
High-throughput computational screening (HTCS) is an effective tool to accelerate the discovery of a...
The calculation of molecular redox potentials in aqueous solution presents a challenge to quantum ch...
Quantum chemical implicit solvent models are used widely to estimate aqueous redox potentials. We co...
First principles simulations were used to predict aqueous one-electron oxidation potentials (E-ox) a...
A simple computational approach for predicting ground-state reduction potentials based upon gas phas...
A simple computational approach for predicting ground-state reduction potentials based upon gas phas...
Quantitative prediction of the energetics of redox half-reactions is still a challenge for modern co...
Discovering new materials for energy storage requires reliable and efficient protocols for predictin...
Using many-body perturbation theory within a G0W0 approximation, with a plane wave basis set and usi...
We describe and evaluate a method for computationally predicting reduction potentials of a diverse g...
CONSPECTUS: All-atom methods treat solute and solvent at the same level of electronic structure theo...
High-throughput computational screening (HTCS) is a powerful approach for the rational and time-effi...
Using many-body perturbation theory within a G 0 W 0 approximation, with a plane wave basis set and ...
A set of mathematical expressions to predict redox potentials and frontier orbital energy levels for...
High-throughput computational screening (HTCS) is an effective tool to accelerate the discovery of a...
High-throughput computational screening (HTCS) is an effective tool to accelerate the discovery of a...