Issue 10, 2013

13C–1H dipolar couplings for probing rod-like hydrogen bonded mesogens

Abstract

Hydrogen bonding is the most important non-covalent interaction utilised in building supramolecular assemblies and is preferred often as a means of construction of molecular, oligomeric as well as polymeric materials that show liquid crystalline properties. In this work, a pyridine based nematogenic acceptor has been synthesized and mixed with non-mesogenic 4-methoxy benzoic acid to get a hydrogen bonded mesogen. The existence of hydrogen bonding between the pyridyl unit and the carboxylic acid was established using FT-IR spectroscopy from the observation of characteristic stretching vibrations of unionized type at 2425 and 1927 cm−1. The mesogenic acceptor and the complex have been investigated using 13C NMR in solution, solid and liquid crystalline states. Together with the 2D separated local field NMR experiments, the studies confirm the molecular structure in the mesophase and yield the local orientational order parameters. It is observed that the insertion of 4-methoxy benzoic acid not only enhances the mesophase stability but also induces a smectic phase due to an increase in the core length of the hydrogen bonded mesogen.

Graphical abstract: 13C–1H dipolar couplings for probing rod-like hydrogen bonded mesogens

Supplementary files

Article information

Article type
Paper
Submitted
13 Mar 2013
Accepted
30 Jul 2013
First published
02 Aug 2013

New J. Chem., 2013,37, 3195-3206

13 C–1H dipolar couplings for probing rod-like hydrogen bonded mesogens

M. K. Reddy, K. S. Reddy, T. Narasimhaswamy, B. B. Das, N. P. Lobo and K. V. Ramanathan, New J. Chem., 2013, 37, 3195 DOI: 10.1039/C3NJ00271C

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