Issue 35, 2006

Trimeric supramolecular liquid crystals induced by halogen bonds

Abstract

This paper described a series of trimeric halogen bonded supramolecular thermotropic liquid crystals. The halogen bonding interaction was studied by infrared and X-ray photoelectron spectroscopy. It was observed that the aromatic skeleton infrared vibration of halogen bonded acceptor molecules had moved to higher frequencies relative to their corresponding unbonded counterparts. The halogen-bonded acceptors showed higher N 1s binding energies of 0.89–1.12 eV than those of unbonded components. In contrast, the halogen-bonded donors displayed lower I 3d binding energies than their corresponding unbonded species. The changes in binding energies and in infrared frequencies demonstrated the presence of effective halogen bonding interaction. The thermal behaviors of the halogen-bonded complexes were examined using differential scanning calorimetry and optical polarizing microscopy. Most of the trimeric complexes exhibited thermotropic liquid crystals with smectic A phases. The effect of length in spacers and terminal groups in halogen bond molecules on mesophase transition temperatures was investigated, revealing that there was little correlation between the length in spacers and terminal groups and phase transition temperatures.

Graphical abstract: Trimeric supramolecular liquid crystals induced by halogen bonds

Supplementary files

Article information

Article type
Paper
Submitted
10 May 2006
Accepted
25 Jul 2006
First published
08 Aug 2006

J. Mater. Chem., 2006,16, 3540-3545

Trimeric supramolecular liquid crystals induced by halogen bonds

J. Xu, X. Liu, J. K. Ng, T. Lin and C. He, J. Mater. Chem., 2006, 16, 3540 DOI: 10.1039/B606617H

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