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Accurate and efficient representation of intramolecular energy in ab initio generation of crystal structures. II. Smoothed intramolecular potentials. | LitMetric

Accurate and efficient representation of intramolecular energy in ab initio generation of crystal structures. II. Smoothed intramolecular potentials.

Acta Crystallogr B Struct Sci Cryst Eng Mater

Molecular Systems Engineering Group, Centre for Process Systems Engineering, Department of Chemical Engineering, Imperial College London, London, SW7 2AZ, UK.

Published: June 2019

AI Article Synopsis

  • The study introduces a new model for crystal structure prediction (CSP) that addresses issues with molecular flexibility in larger compounds, improving upon previous models by eliminating discontinuities.
  • The revised model, implemented in the CrystalPredictor code, demonstrates significant reductions in computational effort (up to 65%) and enhances reliability when analyzing various compounds.
  • Additionally, the approach successfully identifies all three known polymorphs of flufenamic acid for the first time, indicating its effectiveness in computational studies.

Article Abstract

The application of crystal structure prediction (CSP) to industrially relevant molecules requires the handling of increasingly large and flexible compounds. A revised model for the effect of molecular flexibility on the lattice energy that removes the discontinuities and non-differentiabilities present in earlier models (Sugden et al., 2016), with a view to improving the performance of CSP is presented. The approach is based on the concept of computing a weighted average of local models, and has been implemented within the CrystalPredictor code. Through the comparative investigation of several compounds studied in earlier literature, it is shown that this new model results in large reductions in computational effort (of up to 65%) and in significant increases in reliability. The approach is further applied to investigate, for the first time, the computational polymorphic landscape of flufenamic acid for Z' = 1 structures, resulting in the successful identification of all three experimentally resolved polymorphs within reasonable computational time.

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Source
http://dx.doi.org/10.1107/S2052520619005778DOI Listing

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