The use of the most accurate (i.e., QM or QM/MM) levels of theory for free energy simulations (FES) is typically not possible. Primarily, this is because the computational cost associated with the extensive configurational sampling needed for converging FES is prohibitive. To ensure the feasibility of QM-based FES, the “indirect” approach is generally taken, necessitating a free energy calculation between the MM and QM/MM potential energy surfaces. Ideally, this step is performed with standard free energy perturbation (Zwanzig’s equation) as it only requires simulations be carried out at the low level of theory; however, work from several groups over the past few years has conclusively shown that Zwanzig’s equation is ill-suited to this tas...
Maintaining a proper balance between specific intermolecular interactions and non-specific solvent i...
Hybrid free energy methods allow estimation of free energy differences at the quantum mechanics (QM)...
AbstractBackgroundRecent years have seen enormous progress in the development of methods for modelin...
The use of the most accurate (i.e., QM or QM/MM) levels of theory for free energy simulations (FES) ...
The computation of free energy is pivotal to understanding the fundamental nature of chemical phenom...
The work presented within this thesis uses quantum mechanical (QM) calculations to improve free ener...
We have compared two approaches to calculate relative binding free energies employing molecular dyna...
The calculation of free energy differences between levels of theory has numerous potential pitfalls....
In this thesis, a simplified Quantum Mechanics/Molecular Mechanics (QM/MM) method has been developed...
Indirect (S)QM/MM free energy simulations (FES) are vital to efficiently incorporating sufficient sa...
Background Recent years have seen enormous progress in the development of methods for modeling (bio)...
In this article, the convergence of quantum mechanical (QM) free-energy simulations based on molecul...
We present a molecular simulation protocol to compute free energies of binding, which combines a QM/...
Lately, there has been great interest in performing free-energy perturbation (FEP) at the combined q...
The calculation of free energy differences between levels of theory has numerous potential pitfalls....
Maintaining a proper balance between specific intermolecular interactions and non-specific solvent i...
Hybrid free energy methods allow estimation of free energy differences at the quantum mechanics (QM)...
AbstractBackgroundRecent years have seen enormous progress in the development of methods for modelin...
The use of the most accurate (i.e., QM or QM/MM) levels of theory for free energy simulations (FES) ...
The computation of free energy is pivotal to understanding the fundamental nature of chemical phenom...
The work presented within this thesis uses quantum mechanical (QM) calculations to improve free ener...
We have compared two approaches to calculate relative binding free energies employing molecular dyna...
The calculation of free energy differences between levels of theory has numerous potential pitfalls....
In this thesis, a simplified Quantum Mechanics/Molecular Mechanics (QM/MM) method has been developed...
Indirect (S)QM/MM free energy simulations (FES) are vital to efficiently incorporating sufficient sa...
Background Recent years have seen enormous progress in the development of methods for modeling (bio)...
In this article, the convergence of quantum mechanical (QM) free-energy simulations based on molecul...
We present a molecular simulation protocol to compute free energies of binding, which combines a QM/...
Lately, there has been great interest in performing free-energy perturbation (FEP) at the combined q...
The calculation of free energy differences between levels of theory has numerous potential pitfalls....
Maintaining a proper balance between specific intermolecular interactions and non-specific solvent i...
Hybrid free energy methods allow estimation of free energy differences at the quantum mechanics (QM)...
AbstractBackgroundRecent years have seen enormous progress in the development of methods for modelin...