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Updated: Aug 5, 2025

Reliable Mechanochemistry: Protocols for Reproducible Outcomes of Neat and Liquid Assisted Ball-mill Grinding Experiments
Published on: January 23, 2018
Computational evaluation of halogen-bonded cocrystals enables prediction of their mechanochemical interconversion
Lavanya Kumar1, Katarina Leko2, Vinko Nemec2
1Faculty of Chemistry, University of Warsaw 1 Pasteura St. 02-093 Warsaw Poland m.arhangelskis@uw.edu.pl.
Abstract:
Periodic density-functional theory (DFT) calculations were used to predict the thermodynamic stability and the likelihood of interconversion between a series of halogen-bonded cocrystals. The outcomes of mechanochemical transformations were in excellent agreement with the theoretical predictions, demonstrating the power of periodic DFT as a method for designing solid-state mechanochemical reactions prior to experimental work. Furthermore, the calculated DFT energies were compared with experimental dissolution calorimetry measurements, marking the first such benchmark for the accuracy of periodic DFT calculations in modelling transformations of halogen-bonded molecular crystals.
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