Understanding discrepancies in noncovalent interaction energies from wavefunction theories for large molecules

T Tobias Schäfer A Andreas Irmler A Alejandro Gallo (Institute for Theoretical Physics, TU Wien 14 , Wiedner Hauptstraße 8–10/136, 1040 Vienna,) A Andreas Grüneis (Institute for Theoretical Physics, TU Wien 14 , Wiedner Hauptstraße 8–10/136, 1040 Vienna,)

Abstract

Abstract Are the currently used reference methods to approximately solve the many-electron Schrödinger equation accurate enough? Here, we investigate recently reported discrepancies of noncovalent interaction energies for large molecules predicted by two of the most widely-trusted many-electron theories: diffusion quantum Monte Carlo and coupled-cluster theory. We are able to unequivocally pin down the main source of the puzzling discrepancies and present modifications to widely-used coupled-cluster methods needed for more accurate noncovalent interaction energies of large molecules on the hundred-atom scale. This is of critical impact for a wide range of applications which rely on highly-accurate interaction energies between large and polarizable molecules.

Article Details

Volume / Issue Vol. 16, Issue 1
Published October 14, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (4)

T

Tobias Schäfer

A

Andreas Irmler

A

Alejandro Gallo

Institute for Theoretical Physics, TU Wien 14 , Wiedner Hauptstraße 8–10/136, 1040 Vienna,

A

Andreas Grüneis

Institute for Theoretical Physics, TU Wien 14 , Wiedner Hauptstraße 8–10/136, 1040 Vienna,