Back to Search Start Over

Cavity-free continuum solvation: implementation and parametrization in a multiwavelet framework

Authors :
S., Gabriel A. Gerez
Eikås, Roberto Di Remigio
Jensen, Stig Rune
Bjørgve, Magnar
Frediani, Luca
Publication Year :
2022

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.

Subjects

Subjects :
Physics - Chemical Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2211.02461
Document Type :
Working Paper