Energy frameworks: insights into interaction anisotropy and the mechanical properties of molecular crystals
The University of Western Australia · Crawley Hospital
Abstract
We present an approach to understanding crystal packing via 'energy frameworks', that combines efficient calculation of accurate intermolecular interaction energies with a novel graphical representation of their magnitude. In this manner intriguing questions, such as why some crystals bend with an applied force while others break, and why one polymorph of a drug exhibits exceptional tabletability compared to others, can be addressed in terms of the anisotropy of the topology of pairwise intermolecular interaction energies. This approach is applied to a sample of organic molecular crystals with known bending, shearing and brittle behaviour, to illustrate its use in rationalising their mechanical behaviour at a…
Citation impact
- FWCI
- 15.48
- Percentile
- 100%
- References
- 30
Authors
5- MJMichael J. Turner
The University of Western Australia, Crawley Hospital
- SPSajesh P. Thomas
The University of Western Australia, Crawley Hospital
- MSM. Shi
The University of Western Australia, Crawley Hospital
- DJDylan Jayatilaka
The University of Western Australia, Crawley Hospital
- MAMark A. SpackmanCorresponding
The University of Western Australia, Crawley Hospital
Topics & keywords
- Anisotropy
- Chemical physics
- Materials science
- Nanotechnology
- Chemistry
- Crystallography
- Physics
- Affordable and clean energy