A novel force-field development strategy is proposed that tackles the well-known difficulty of parameter correlations arising in a conventional least-squares optimization. In the first step of the new gradient curves method (GCM), continuity criteria are imposed to transform the raw multidimensional ab initio training data to distinct sets of one-dimensional data, each associated with an individual energy term. In the second step, the transformed data suggest suitable analytical expressions, and the parameters in these expressions are fitted to the transformed data; that is, one does not have to postulate a priori analytical expressions for the force-field energy terms. This approach facilitates the derivation of valence terms. Benchmarks h...
Molecular dynamics simulations are helpful tools for a range of applications, ranging from drug disc...
International audienceWe introduce and explore an approach for constructing force fields for small m...
Parametrization of the bonded part of molecular mechanics (MM) force fields (FFs) is typically done ...
A novel force-field development strategy is proposed that tackles the well-known difficulty of param...
Computer simulations of chemical systems, especially systems of condensed matter, are highly importa...
In this study, the recently developed gradient-based optimisation workflow for the automated develop...
Using conservation of energy - a fundamental property of closed classical and quantum mechanical sys...
A central goal of molecular simulations is to predict physical or chemical properties such that cost...
Simulations of molecular systems using electronic structure methods are still not feasible for many ...
Highly accurate force fields are a mandatory requirement to generate predictive simulations. Here we...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
A procedure is given by which parameters of nonbonded interactions in a molecular mechanics energy f...
Many molecular simulation methods use force fields to help model and simulate molecules and their be...
We introduce and explore an approach for constructing force fields for small molecules, which combin...
A method is presented by which ab initio (or empirical) force fields and structures can be convert...
Molecular dynamics simulations are helpful tools for a range of applications, ranging from drug disc...
International audienceWe introduce and explore an approach for constructing force fields for small m...
Parametrization of the bonded part of molecular mechanics (MM) force fields (FFs) is typically done ...
A novel force-field development strategy is proposed that tackles the well-known difficulty of param...
Computer simulations of chemical systems, especially systems of condensed matter, are highly importa...
In this study, the recently developed gradient-based optimisation workflow for the automated develop...
Using conservation of energy - a fundamental property of closed classical and quantum mechanical sys...
A central goal of molecular simulations is to predict physical or chemical properties such that cost...
Simulations of molecular systems using electronic structure methods are still not feasible for many ...
Highly accurate force fields are a mandatory requirement to generate predictive simulations. Here we...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
A procedure is given by which parameters of nonbonded interactions in a molecular mechanics energy f...
Many molecular simulation methods use force fields to help model and simulate molecules and their be...
We introduce and explore an approach for constructing force fields for small molecules, which combin...
A method is presented by which ab initio (or empirical) force fields and structures can be convert...
Molecular dynamics simulations are helpful tools for a range of applications, ranging from drug disc...
International audienceWe introduce and explore an approach for constructing force fields for small m...
Parametrization of the bonded part of molecular mechanics (MM) force fields (FFs) is typically done ...