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Updated: May 27, 2025

From Molecules to Materials: Engineering New Ionic Liquid Crystals Through Halogen Bonding
Published on: March 24, 2018
Non-covalent interactions in solid p-C6F4Cl2 and C6F5Cl
Joseph C Bear1, Alexander Rosu-Finsen2, Jeremy K Cockcroft2
1School of Life Sciences, Pharmacy and Chemistry, Kingston University, Penrhyn Road Kingston upon Thames KT1 2EE UK.
Abstract:
This study investigates the crystal structure and phase behaviour of two organofluorine aromatic compounds, para-dichlorotetrafluorobenzene (p-C6F4Cl2) and chloropentafluorobenzene (C6F5Cl), with a focus on solid-state phase transitions and non-covalent interactions. The thermal and structural properties of these compounds were investigated using a combination of differential scanning calorimetry (DSC), variable-temperature powder X-ray diffraction (VT-PXRD), and single-crystal X-ray diffraction (SXD). While p-C6F4Cl2 showed no solid-state phase transitions, C6F5Cl exhibited three solid-state phases, including a reversible solid-solid transition at low temperature and an elusive transition just below the melt. The phase II-III transition in C6F5Cl is due to a change from twofold disorder to an antiferroelectric arrangement of the molecular dipole moment. Phase II of C6F5Cl is isomorphous to the structure of p-C6F4Cl2. A comparison of the different solid-state structures of mono- and para-di-halide-substituted hexafluorobenzenes is given.
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