Issue 74, 2021

Theoretically derived thermodynamic properties can be improved by the refinement of low-frequency modes against X-ray diffraction data

Abstract

Herein, a framework for the estimation of the thermodynamic properties of molecular crystals via the refinement of frequencies from density functional theory calculations against X-ray diffraction data is presented. The framework provides an efficient approach to including the contribution of acoustic modes in the thermodynamic properties. The obtained heat capacities for urea, the α- and β-glycine polymorphs, benzoic acid, and 4′-hydroxyacetophenone are in good agreement with those from adiabatic calorimetry.

Graphical abstract: Theoretically derived thermodynamic properties can be improved by the refinement of low-frequency modes against X-ray diffraction data

Supplementary files

Article information

Article type
Communication
Submitted
18 May 2021
Accepted
10 Aug 2021
First published
11 Aug 2021

Chem. Commun., 2021,57, 9370-9373

Theoretically derived thermodynamic properties can be improved by the refinement of low-frequency modes against X-ray diffraction data

A. A. Hoser, M. Sztylko, D. Trzybiński and A. Ø. Madsen, Chem. Commun., 2021, 57, 9370 DOI: 10.1039/D1CC02608A

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