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Updated: Jan 11, 2026

From Molecules to Materials: Engineering New Ionic Liquid Crystals Through Halogen Bonding
Published on: March 24, 2018
Crystal structure and Hirshfeld surface analysis of lithium chloride and lithium bromide with dimethyl ether ligands
Julius Hättasch1, Annika Schmidt1, Carsten Strohmann1
1Technische Universität Dortmund, Fakultät fü Chemie und Chemische Biologie, Otto-Hahn-Strasse 6, 44227 Dortmund, Germany.
Abstract:
Lithium chloride and bromide dimethyl ether adducts, di-μ-chlorido-bis-[bis-(dimethyl ether-κO)lithium], [Li2Cl2(DME)4] (1), and di-μ-bromido-bis-[bis-(dimethyl ether-κO)lithium], [Li2Br2(DME)4] (2) [DME is dimethyl ether, C2H6O], have been characterized by single-crystal X-ray diffraction. Both com-pounds crystallize as dimers, in which the lithium ions are tetra-hedrally coordinated by two μ-halide ions and two O-centres from the DME ligands. In 1, the dimers form two-dimensional layers defined by CH3⋯Cl tetrel bonds, while the bromide analogue assembles into planar sheets featuring CH3⋯CH3 contacts. Hirshfeld surface analyses reveal that H⋯H and halogen-hy-dro-gen inter-actions dominate the inter-molecular contacts. The results demonstrate that even the simplest ether, dimethyl ether, can act as an effective coordinating ligand toward lithium halides and influence their aggregation and supra-molecular organization. Thereby, this study explores new advances into the preparation and handling of sophisticated coordination com-pounds with gaseous ligands.
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