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Design of Thermochromic Polynorbornene Bearing Spiropyran Chromophore Moieties: Synthesis, Thermal Behavior and Dielectric Barrier Discharge Plasma Treatment

A new class of thermochromic polynorbornene with pendent spiropyran moieties has been synthesized. Functionalization of norbornene monomers with spirobenzopyran moieties has been achieved using Steglich esterification. These new monomeric materials were polymerized via Ring Opening Metathesis Polyme...

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Autores principales: Ahmed, Saleh A., Okasha, Rawda M., Khairou, Khalid S., Afifi, Tarek H., Mohamed, Abdel-Aleam H., Abd-El-Aziz, Alaa S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6418514/
https://www.ncbi.nlm.nih.gov/pubmed/30965934
http://dx.doi.org/10.3390/polym9110630
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author Ahmed, Saleh A.
Okasha, Rawda M.
Khairou, Khalid S.
Afifi, Tarek H.
Mohamed, Abdel-Aleam H.
Abd-El-Aziz, Alaa S.
author_facet Ahmed, Saleh A.
Okasha, Rawda M.
Khairou, Khalid S.
Afifi, Tarek H.
Mohamed, Abdel-Aleam H.
Abd-El-Aziz, Alaa S.
author_sort Ahmed, Saleh A.
collection PubMed
description A new class of thermochromic polynorbornene with pendent spiropyran moieties has been synthesized. Functionalization of norbornene monomers with spirobenzopyran moieties has been achieved using Steglich esterification. These new monomeric materials were polymerized via Ring Opening Metathesis Polymerization (ROMP). In spite of their poor solubility, polynorbornenes with spirobenzopyran exhibited thermochromic behavior due to the conversion of their closed spiropyran moieties to the open merocyanine form. Moreover, these polymers displayed bathochromic shifts in their optical response, which was attributed to the J-aggregation of the attached merocyanine moieties that were associated with their high concentration in the polymeric chain. The surface of the obtained polymers was exposed to atmospheric pressure air Dielectric Barrier Discharge (DBD) plasma system, which resulted in the reduction of the surface porosity and converted some surface area into completely non-porous regions. Moreover, the plasma system created some areas with highly ordered J-aggregates of the merocyanine form in thread-like structures. This modification of the polymers’ morphology may alter their applications and allow for these materials to be potential candidates for new applications, such as non-porous membranes for reverse osmosis, nanofiltration, or molecular separation in the gas phase.
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spelling pubmed-64185142019-04-02 Design of Thermochromic Polynorbornene Bearing Spiropyran Chromophore Moieties: Synthesis, Thermal Behavior and Dielectric Barrier Discharge Plasma Treatment Ahmed, Saleh A. Okasha, Rawda M. Khairou, Khalid S. Afifi, Tarek H. Mohamed, Abdel-Aleam H. Abd-El-Aziz, Alaa S. Polymers (Basel) Article A new class of thermochromic polynorbornene with pendent spiropyran moieties has been synthesized. Functionalization of norbornene monomers with spirobenzopyran moieties has been achieved using Steglich esterification. These new monomeric materials were polymerized via Ring Opening Metathesis Polymerization (ROMP). In spite of their poor solubility, polynorbornenes with spirobenzopyran exhibited thermochromic behavior due to the conversion of their closed spiropyran moieties to the open merocyanine form. Moreover, these polymers displayed bathochromic shifts in their optical response, which was attributed to the J-aggregation of the attached merocyanine moieties that were associated with their high concentration in the polymeric chain. The surface of the obtained polymers was exposed to atmospheric pressure air Dielectric Barrier Discharge (DBD) plasma system, which resulted in the reduction of the surface porosity and converted some surface area into completely non-porous regions. Moreover, the plasma system created some areas with highly ordered J-aggregates of the merocyanine form in thread-like structures. This modification of the polymers’ morphology may alter their applications and allow for these materials to be potential candidates for new applications, such as non-porous membranes for reverse osmosis, nanofiltration, or molecular separation in the gas phase. MDPI 2017-11-22 /pmc/articles/PMC6418514/ /pubmed/30965934 http://dx.doi.org/10.3390/polym9110630 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ahmed, Saleh A.
Okasha, Rawda M.
Khairou, Khalid S.
Afifi, Tarek H.
Mohamed, Abdel-Aleam H.
Abd-El-Aziz, Alaa S.
Design of Thermochromic Polynorbornene Bearing Spiropyran Chromophore Moieties: Synthesis, Thermal Behavior and Dielectric Barrier Discharge Plasma Treatment
title Design of Thermochromic Polynorbornene Bearing Spiropyran Chromophore Moieties: Synthesis, Thermal Behavior and Dielectric Barrier Discharge Plasma Treatment
title_full Design of Thermochromic Polynorbornene Bearing Spiropyran Chromophore Moieties: Synthesis, Thermal Behavior and Dielectric Barrier Discharge Plasma Treatment
title_fullStr Design of Thermochromic Polynorbornene Bearing Spiropyran Chromophore Moieties: Synthesis, Thermal Behavior and Dielectric Barrier Discharge Plasma Treatment
title_full_unstemmed Design of Thermochromic Polynorbornene Bearing Spiropyran Chromophore Moieties: Synthesis, Thermal Behavior and Dielectric Barrier Discharge Plasma Treatment
title_short Design of Thermochromic Polynorbornene Bearing Spiropyran Chromophore Moieties: Synthesis, Thermal Behavior and Dielectric Barrier Discharge Plasma Treatment
title_sort design of thermochromic polynorbornene bearing spiropyran chromophore moieties: synthesis, thermal behavior and dielectric barrier discharge plasma treatment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6418514/
https://www.ncbi.nlm.nih.gov/pubmed/30965934
http://dx.doi.org/10.3390/polym9110630
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