Study about synthesis of polyarylacetylenes using cardanol and glycerol as raw materials
<div class="WordSection1"><p>Recently, studies aiming to preparation of nanomaterials for application in high technology areas are very advanced in developed countries. Liquid crystals have a vast application and for that; many researches are focused on the development of these...
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Universidade Federal de Mato Grosso do Sul
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doaj-5411a07ba5f0426591aaeac174291d302021-07-07T19:22:34ZengUniversidade Federal de Mato Grosso do SulOrbital: The Electronic Journal of Chemistry1984-64282012-06-0141272810.17807/orbital.v4i1.351121Study about synthesis of polyarylacetylenes using cardanol and glycerol as raw materialsTatiana Matayoshi0Dênis P. Lima1Adilson Beatriz2SINTMOL - Laboratório de Síntese e Transformações de Moléculas Orgânicas. Centro de Ciências Exatas e Tecnologia, Universidade Federal de Mato Grosso do SulSINTMOL - Laboratório de Síntese e Transformações de Moléculas Orgânicas. Centro de Ciências Exatas e Tecnologia, Universidade Federal de Mato Grosso do SulSINTMOL - Laboratório de Síntese e Transformações de Moléculas Orgânicas. Centro de Ciências Exatas e Tecnologia, Universidade Federal de Mato Grosso do Sul<div class="WordSection1"><p>Recently, studies aiming to preparation of nanomaterials for application in high technology areas are very advanced in developed countries. Liquid crystals have a vast application and for that; many researches are focused on the development of these special molecules. Polyarylacetylenes are polymers that can hold helicity if polymerization of the monomer occurs in the presence of appropriate metal catalysts. The aiming of this work is to prepare side-chain crystal-liquid helicoidal chiral polymers. These systems show a molecular structure in which the mesogenic unity (pendant) is sided-attached to the polymeric chain. If a chiral substituent is incorporated to the monomer, it will induct chirality of the polymer. Glycerol [1] and cardanol [2],<em> </em>obtained from renewable source, were formally coupled to form the epoxide <strong>1</strong> that in turn was treated with 4-ethylanyline in CHCl<sub>3</sub> at 120 <sup>o</sup>C in a sealed tube in the presence of pyridine, furnishing monomer <strong>2</strong> (40%). The next step it will be the enzymatic resolution of the alcohol <strong>2</strong> in order to achieve optical pure <strong>2</strong>. Sequentially, from monomer <strong>2</strong>, it is going to be synthesized the targeted stereoregular cis-trans polymer following known procedures, using [Rh(nbd)Cl]2 (nbd=2,5-norbornadiene) as the catalyst [4].<em></em></p></div>http://orbital.ufms.br/index.php/Chemistry/article/view/351helical polymersliquid crystalscardanolglycerol |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tatiana Matayoshi Dênis P. Lima Adilson Beatriz |
spellingShingle |
Tatiana Matayoshi Dênis P. Lima Adilson Beatriz Study about synthesis of polyarylacetylenes using cardanol and glycerol as raw materials Orbital: The Electronic Journal of Chemistry helical polymers liquid crystals cardanol glycerol |
author_facet |
Tatiana Matayoshi Dênis P. Lima Adilson Beatriz |
author_sort |
Tatiana Matayoshi |
title |
Study about synthesis of polyarylacetylenes using cardanol and glycerol as raw materials |
title_short |
Study about synthesis of polyarylacetylenes using cardanol and glycerol as raw materials |
title_full |
Study about synthesis of polyarylacetylenes using cardanol and glycerol as raw materials |
title_fullStr |
Study about synthesis of polyarylacetylenes using cardanol and glycerol as raw materials |
title_full_unstemmed |
Study about synthesis of polyarylacetylenes using cardanol and glycerol as raw materials |
title_sort |
study about synthesis of polyarylacetylenes using cardanol and glycerol as raw materials |
publisher |
Universidade Federal de Mato Grosso do Sul |
series |
Orbital: The Electronic Journal of Chemistry |
issn |
1984-6428 |
publishDate |
2012-06-01 |
description |
<div class="WordSection1"><p>Recently, studies aiming to preparation of nanomaterials for application in high technology areas are very advanced in developed countries. Liquid crystals have a vast application and for that; many researches are focused on the development of these special molecules. Polyarylacetylenes are polymers that can hold helicity if polymerization of the monomer occurs in the presence of appropriate metal catalysts. The aiming of this work is to prepare side-chain crystal-liquid helicoidal chiral polymers. These systems show a molecular structure in which the mesogenic unity (pendant) is sided-attached to the polymeric chain. If a chiral substituent is incorporated to the monomer, it will induct chirality of the polymer. Glycerol [1] and cardanol [2],<em> </em>obtained from renewable source, were formally coupled to form the epoxide <strong>1</strong> that in turn was treated with 4-ethylanyline in CHCl<sub>3</sub> at 120 <sup>o</sup>C in a sealed tube in the presence of pyridine, furnishing monomer <strong>2</strong> (40%). The next step it will be the enzymatic resolution of the alcohol <strong>2</strong> in order to achieve optical pure <strong>2</strong>. Sequentially, from monomer <strong>2</strong>, it is going to be synthesized the targeted stereoregular cis-trans polymer following known procedures, using [Rh(nbd)Cl]2 (nbd=2,5-norbornadiene) as the catalyst [4].<em></em></p></div> |
topic |
helical polymers liquid crystals cardanol glycerol |
url |
http://orbital.ufms.br/index.php/Chemistry/article/view/351 |
work_keys_str_mv |
AT tatianamatayoshi studyaboutsynthesisofpolyarylacetylenesusingcardanolandglycerolasrawmaterials AT denisplima studyaboutsynthesisofpolyarylacetylenesusingcardanolandglycerolasrawmaterials AT adilsonbeatriz studyaboutsynthesisofpolyarylacetylenesusingcardanolandglycerolasrawmaterials |
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1721314847470125056 |