Molecular dynamics study of liquid crystals by 2H and 14N NMR spectroscopy

Deuterium (2H) and Nitrogen 14 (14N) NMR spectroscopy were used to investigate the molecular dynamics in one thermotropic and one lyotropic liquid crystal. Quantitative analyses of deuterium spectral densities of motion for three deuteron sites (ring and C[alpha]) at two different Larmor frequencies...

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Main Author: Chen, Yanbin
Other Authors: Dong, Ronald Y (Physics and Astronomy)
Language:en_US
Published: 2006
Subjects:
Online Access:http://hdl.handle.net/1993/222
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-MWU.1993-2222014-03-29T03:40:57Z Molecular dynamics study of liquid crystals by 2H and 14N NMR spectroscopy Chen, Yanbin Dong, Ronald Y (Physics and Astronomy) Hoult, David I (Physics and Astronomy) Hegmann, Torsten (Chemistry) 2H 14N NMR liquid crystals Deuterium (2H) and Nitrogen 14 (14N) NMR spectroscopy were used to investigate the molecular dynamics in one thermotropic and one lyotropic liquid crystal. Quantitative analyses of deuterium spectral densities of motion for three deuteron sites (ring and C[alpha]) at two different Larmor frequencies (46 and 61.4MHz) are reported in the smectic A and C* phases of (S)-[4-(2-methylbutyl)phenyl]-4’-octylbiphenyl carboxylate (8BEF5-d15), a partially deuterated smectogen. 2H spectral densities for two deuteron sites on the chain (C1 and C2/C3) at Larmor frequency 61.4MHz and 14N spectral densities for the head group (NH4+) of the molecule decylammonium chloride (DACl) at 28.9MHz are reported in the lamellar phase of a partially deuterated sample, DACl-d11/H2O binary system. The motional model is the small step rotational diffusion for reorientations plus internal rotations in the strong collision limit. In the chiral C* phase of the first molecule, 8BEF5-d15, the helical axes are aligned along the external magnetic field and the deuteron spins appear to relax in a macroscopically uniaxial environment. After including the molecular tilt, the reorientation processes in the SmC* phase are found to have higher activation energies than those in the smectic A phase. Applying the same motional models to the lyotropic molecule DACl-d11, the tumbling motion of the long axis of the molecule in the aggregates is more rigorous in comparison to the molecular spinning motion. The similarity of deuterium spectral densities from the C1 and C2/C3 sites may indicate a relatively rigid unit of C1-C2-C3-C4 in the backbone. 2006-03-28T13:18:08Z 2006-03-28T13:18:08Z 2006-03-28T13:18:08Z Electronic Thesis or Dissertation Ronald Y. Dong, Yanbin Chen, and C. A. Veracini. Ronald Y. Dong and Yanbin Chen http://hdl.handle.net/1993/222 en_US
collection NDLTD
language en_US
sources NDLTD
topic 2H 14N NMR liquid crystals
spellingShingle 2H 14N NMR liquid crystals
Chen, Yanbin
Molecular dynamics study of liquid crystals by 2H and 14N NMR spectroscopy
description Deuterium (2H) and Nitrogen 14 (14N) NMR spectroscopy were used to investigate the molecular dynamics in one thermotropic and one lyotropic liquid crystal. Quantitative analyses of deuterium spectral densities of motion for three deuteron sites (ring and C[alpha]) at two different Larmor frequencies (46 and 61.4MHz) are reported in the smectic A and C* phases of (S)-[4-(2-methylbutyl)phenyl]-4’-octylbiphenyl carboxylate (8BEF5-d15), a partially deuterated smectogen. 2H spectral densities for two deuteron sites on the chain (C1 and C2/C3) at Larmor frequency 61.4MHz and 14N spectral densities for the head group (NH4+) of the molecule decylammonium chloride (DACl) at 28.9MHz are reported in the lamellar phase of a partially deuterated sample, DACl-d11/H2O binary system. The motional model is the small step rotational diffusion for reorientations plus internal rotations in the strong collision limit. In the chiral C* phase of the first molecule, 8BEF5-d15, the helical axes are aligned along the external magnetic field and the deuteron spins appear to relax in a macroscopically uniaxial environment. After including the molecular tilt, the reorientation processes in the SmC* phase are found to have higher activation energies than those in the smectic A phase. Applying the same motional models to the lyotropic molecule DACl-d11, the tumbling motion of the long axis of the molecule in the aggregates is more rigorous in comparison to the molecular spinning motion. The similarity of deuterium spectral densities from the C1 and C2/C3 sites may indicate a relatively rigid unit of C1-C2-C3-C4 in the backbone.
author2 Dong, Ronald Y (Physics and Astronomy)
author_facet Dong, Ronald Y (Physics and Astronomy)
Chen, Yanbin
author Chen, Yanbin
author_sort Chen, Yanbin
title Molecular dynamics study of liquid crystals by 2H and 14N NMR spectroscopy
title_short Molecular dynamics study of liquid crystals by 2H and 14N NMR spectroscopy
title_full Molecular dynamics study of liquid crystals by 2H and 14N NMR spectroscopy
title_fullStr Molecular dynamics study of liquid crystals by 2H and 14N NMR spectroscopy
title_full_unstemmed Molecular dynamics study of liquid crystals by 2H and 14N NMR spectroscopy
title_sort molecular dynamics study of liquid crystals by 2h and 14n nmr spectroscopy
publishDate 2006
url http://hdl.handle.net/1993/222
work_keys_str_mv AT chenyanbin moleculardynamicsstudyofliquidcrystalsby2hand14nnmrspectroscopy
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