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research article

A data-driven interpretation of the stability of organic molecular crystals

Cersonsky, Rose K.
•
Pakhnova, Maria
•
Engel, Edgar A.
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January 16, 2023
Chemical Science

Due to the subtle balance of intermolecular interactions that govern structure-property relations, predicting the stability of crystal structures formed from molecular building blocks is a highly non-trivial scientific problem. A particularly active and fruitful approach involves classifying the different combinations of interacting chemical moieties, as understanding the relative energetics of different interactions enables the design of molecular crystals and fine-tuning of their stabilities. While this is usually performed based on the empirical observation of the most commonly encountered motifs in known crystal structures, we propose to apply a combination of supervised and unsupervised machine-learning techniques to automate the construction of an extensive library of molecular building blocks. We introduce a structural descriptor tailored to the prediction of the binding (lattice) energy and apply it to a curated dataset of organic crystals, exploiting its atom-centered nature to obtain a data-driven assessment of the contribution of different chemical groups to the lattice energy of the crystal. We then interpret this library using a low-dimensional representation of the structure-energy landscape and discuss selected examples of the insights into crystal engineering that can be extracted from this analysis, providing a complete database to guide the design of molecular materials.

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Type
research article
DOI
10.1039/d2sc06198h
Web of Science ID

WOS:000914127300001

Author(s)
Cersonsky, Rose K.
Pakhnova, Maria
Engel, Edgar A.
Ceriotti, Michele  
Date Issued

2023-01-16

Publisher

ROYAL SOC CHEMISTRY

Published in
Chemical Science
Volume

14

Issue

5

Start page

1272

End page

1285

Subjects

Chemistry, Multidisciplinary

•

Chemistry

•

supramolecular synthon approach

•

pharmaceutical cocrystals

•

hydrogen-bonds

•

high-pressure

•

ethenzamide

•

prediction

•

solubility

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heterosynthon

•

combination

•

polymorphs

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
COSMO  
Available on Infoscience
February 13, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/194772
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