arXiv · 2211.02461
Cavity-free continuum solvation: implementation and parametrization in a multiwavelet framework
Abstract
We present a multiwavelet-based implementation of a quantum/classical polarizable continuum model. The solvent model uses a diffuse solute-solvent boundary and a position-dependent permittivity, lifting the sharp-boundary assumption underlying many existing continuum solvation models. We are able to include both surface and volume polarization effects in the quantum/classical coupling, with guaranteed precision, due to the adaptive refinement strategies of our multiwavelet implementation. The model can account for complex solvent environments and does not need a posteriori corrections for volume polarization effects. We validate our results against a sharp-boundary continuum model and find very good correlation of the polarization energies computed for the Minnesota solvation database.
Explore related subjects
Keep this discovery
Gabriel A. Gerez S., Roberto Di Remigio Eikås, Stig Rune Jensen, Magnar Bjørgve, Luca Frediani. 2022-11-04. Cavity-free continuum solvation: implementation and parametrization in a multiwavelet framework. https://arxiv.org/abs/2211.02461
Cite the original work for its findings. Save a collection to share your selection of sources.