Synthesis and characterization of C₂ symmetric liquid crystalline materials

A number of compounds were synthesized with the ultimate goal being the synthesis of C₂ symmetric molecules which displayed thermotropic liquid crystalline behaviour. The compounds prepared were 4-alkoxy benzophenones, 3,4-bis-alkoxy benzophenones, 4- alkoxy dibenzylidene acetones, 3,4-bis-alkoxy di...

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Main Author: Hope-Ross, Kyle Andrew
Format: Others
Language:English
Published: University of British Columbia 2009
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Online Access:http://hdl.handle.net/2429/4088
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-40882018-01-05T17:23:13Z Synthesis and characterization of C₂ symmetric liquid crystalline materials Hope-Ross, Kyle Andrew Liquid crystal Self-assembly Nematic Mesophase A number of compounds were synthesized with the ultimate goal being the synthesis of C₂ symmetric molecules which displayed thermotropic liquid crystalline behaviour. The compounds prepared were 4-alkoxy benzophenones, 3,4-bis-alkoxy benzophenones, 4- alkoxy dibenzylidene acetones, 3,4-bis-alkoxy dibenzylidene acetones and 4-alkoxy- 1, 9-diphenyl-nona-l,3,6,8-tetraen-5-ones. The length of the linear alkoxy side chain was varied from C₆H₁₃ to C₁₂H₂₅. All compounds were characterized by FTIR, ¹H, and ¹³C NMR spectroscopy. Mesophase behaviour of the synthesized compounds was investigated using differential scanning calorimetry and polarizing optical microscopy. It was determined that both the alkoxy side chain length, as well as the number of alkoxy side chains have an effect on the ability of this class of C₂ symmetric compounds to selfassemble into liquid crystalline phases. In addition, the overall core size and extent of conjugation also affected mesophase formation. The mono-alkoxy benzophenones and dibenzylidene acetones were non-mesogenic, while all four of the mono-alkoxy 1,9- diphenyl-nona-l,3,6,8-tetraen-5-ones (alkoxy side chain of lengths C₆H₁₃, C₈H₁₇, C₁₀H₂₁ and C₁₂H₂₅)self-assembled into nematic liquid crystalline phases. Increasing the number of alkoxy side chains from one to two per aromatic moiety helped induce liquid crystalline formation: the corresponding bis-C₆H₁₃ benzophenone and bis-C ₆H₁₃, bis C₈H₁₇, and bis-C₁₀H₂₁ dibenzylidene acetones were mesogenic, displaying smectic A (benzophenone) and nematic (dibenzylidene acetone) mesophases respectively. Forestry, Faculty of Graduate 2009-02-02T20:04:48Z 2009-02-02T20:04:48Z 2008 2008-11 Text Thesis/Dissertation http://hdl.handle.net/2429/4088 eng Attribution-NonCommercial-NoDerivatives 4.0 International http://creativecommons.org/licenses/by-nc-nd/4.0/ 4042107 bytes application/pdf University of British Columbia
collection NDLTD
language English
format Others
sources NDLTD
topic Liquid crystal
Self-assembly
Nematic
Mesophase
spellingShingle Liquid crystal
Self-assembly
Nematic
Mesophase
Hope-Ross, Kyle Andrew
Synthesis and characterization of C₂ symmetric liquid crystalline materials
description A number of compounds were synthesized with the ultimate goal being the synthesis of C₂ symmetric molecules which displayed thermotropic liquid crystalline behaviour. The compounds prepared were 4-alkoxy benzophenones, 3,4-bis-alkoxy benzophenones, 4- alkoxy dibenzylidene acetones, 3,4-bis-alkoxy dibenzylidene acetones and 4-alkoxy- 1, 9-diphenyl-nona-l,3,6,8-tetraen-5-ones. The length of the linear alkoxy side chain was varied from C₆H₁₃ to C₁₂H₂₅. All compounds were characterized by FTIR, ¹H, and ¹³C NMR spectroscopy. Mesophase behaviour of the synthesized compounds was investigated using differential scanning calorimetry and polarizing optical microscopy. It was determined that both the alkoxy side chain length, as well as the number of alkoxy side chains have an effect on the ability of this class of C₂ symmetric compounds to selfassemble into liquid crystalline phases. In addition, the overall core size and extent of conjugation also affected mesophase formation. The mono-alkoxy benzophenones and dibenzylidene acetones were non-mesogenic, while all four of the mono-alkoxy 1,9- diphenyl-nona-l,3,6,8-tetraen-5-ones (alkoxy side chain of lengths C₆H₁₃, C₈H₁₇, C₁₀H₂₁ and C₁₂H₂₅)self-assembled into nematic liquid crystalline phases. Increasing the number of alkoxy side chains from one to two per aromatic moiety helped induce liquid crystalline formation: the corresponding bis-C₆H₁₃ benzophenone and bis-C ₆H₁₃, bis C₈H₁₇, and bis-C₁₀H₂₁ dibenzylidene acetones were mesogenic, displaying smectic A (benzophenone) and nematic (dibenzylidene acetone) mesophases respectively. === Forestry, Faculty of === Graduate
author Hope-Ross, Kyle Andrew
author_facet Hope-Ross, Kyle Andrew
author_sort Hope-Ross, Kyle Andrew
title Synthesis and characterization of C₂ symmetric liquid crystalline materials
title_short Synthesis and characterization of C₂ symmetric liquid crystalline materials
title_full Synthesis and characterization of C₂ symmetric liquid crystalline materials
title_fullStr Synthesis and characterization of C₂ symmetric liquid crystalline materials
title_full_unstemmed Synthesis and characterization of C₂ symmetric liquid crystalline materials
title_sort synthesis and characterization of c₂ symmetric liquid crystalline materials
publisher University of British Columbia
publishDate 2009
url http://hdl.handle.net/2429/4088
work_keys_str_mv AT hoperosskyleandrew synthesisandcharacterizationofc2symmetricliquidcrystallinematerials
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