An orthogonal, one-pot, simultaneous UV-mediated route to thiol-ene/sol-gel film

We describe a novel combination of orthogonal reactions based on UV-driven thiol–ene and alkoxysilyl condensation reactions to form a single-step route toward thioether-bridged silsesquioxane films. Our chemical strategy consists of using two bifunctional (meth)acrylate (E) and propanethiol (T) trim...

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Main Authors: A. Chemtob, H. De Paz-Simon, M. Sibeaud, B. El Fouhali, C. Croutxe-Barghorn, L. Jacomine, Ch. Gauthier, V. Le Houerou
Format: Article
Language:English
Published: Budapest University of Technology 2016-06-01
Series:eXPRESS Polymer Letters
Subjects:
Online Access:http://www.expresspolymlett.com/letolt.php?file=EPL-0006764&mi=cd
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spelling doaj-823407e574244a2697afa486e7e989d02020-11-24T23:44:50ZengBudapest University of Technology eXPRESS Polymer Letters1788-618X2016-06-0110643944910.3144/expresspolymlett.2016.42An orthogonal, one-pot, simultaneous UV-mediated route to thiol-ene/sol-gel filmA. ChemtobH. De Paz-SimonM. SibeaudB. El FouhaliC. Croutxe-BarghornL. JacomineCh. GauthierV. Le HouerouWe describe a novel combination of orthogonal reactions based on UV-driven thiol–ene and alkoxysilyl condensation reactions to form a single-step route toward thioether-bridged silsesquioxane films. Our chemical strategy consists of using two bifunctional (meth)acrylate (E) and propanethiol (T) trimethoxysilyl precursors containing two complementary functional moieties for thiol-ene coupling and sol-gel process. The reaction kinetics revealed that c.a. 85% of thiol and ene conversions were consumed concomitantly. Meanwhile, a complete hydrolysis was accomplished, affording ultimately a high degree of condensation (81%). Emphasis was placed on differences of mechanical properties between sol-gel hybrids resulting from thiol-ene reaction (E-T mixture) and ene homopolymerization (E only) using scratch test measurements. For the methacrylate system, the formation of thioether linkages within a vitreous silica network emerged as a useful strategy for the formation of a uniform, low-stress and flexible crosslinked hybrid structure. Enhanced mechanical properties were manifested by an expanded elastic domain, and better resistance to cracking. Moreover, there are clear indications that mechanical properties can be easily tuned upon varying the ratio of the two hybrid precursors.http://www.expresspolymlett.com/letolt.php?file=EPL-0006764&mi=cdNanocompositesthiol-enephotopolymerizationmechanical propertiesUV irradiation
collection DOAJ
language English
format Article
sources DOAJ
author A. Chemtob
H. De Paz-Simon
M. Sibeaud
B. El Fouhali
C. Croutxe-Barghorn
L. Jacomine
Ch. Gauthier
V. Le Houerou
spellingShingle A. Chemtob
H. De Paz-Simon
M. Sibeaud
B. El Fouhali
C. Croutxe-Barghorn
L. Jacomine
Ch. Gauthier
V. Le Houerou
An orthogonal, one-pot, simultaneous UV-mediated route to thiol-ene/sol-gel film
eXPRESS Polymer Letters
Nanocomposites
thiol-ene
photopolymerization
mechanical properties
UV irradiation
author_facet A. Chemtob
H. De Paz-Simon
M. Sibeaud
B. El Fouhali
C. Croutxe-Barghorn
L. Jacomine
Ch. Gauthier
V. Le Houerou
author_sort A. Chemtob
title An orthogonal, one-pot, simultaneous UV-mediated route to thiol-ene/sol-gel film
title_short An orthogonal, one-pot, simultaneous UV-mediated route to thiol-ene/sol-gel film
title_full An orthogonal, one-pot, simultaneous UV-mediated route to thiol-ene/sol-gel film
title_fullStr An orthogonal, one-pot, simultaneous UV-mediated route to thiol-ene/sol-gel film
title_full_unstemmed An orthogonal, one-pot, simultaneous UV-mediated route to thiol-ene/sol-gel film
title_sort orthogonal, one-pot, simultaneous uv-mediated route to thiol-ene/sol-gel film
publisher Budapest University of Technology
series eXPRESS Polymer Letters
issn 1788-618X
publishDate 2016-06-01
description We describe a novel combination of orthogonal reactions based on UV-driven thiol–ene and alkoxysilyl condensation reactions to form a single-step route toward thioether-bridged silsesquioxane films. Our chemical strategy consists of using two bifunctional (meth)acrylate (E) and propanethiol (T) trimethoxysilyl precursors containing two complementary functional moieties for thiol-ene coupling and sol-gel process. The reaction kinetics revealed that c.a. 85% of thiol and ene conversions were consumed concomitantly. Meanwhile, a complete hydrolysis was accomplished, affording ultimately a high degree of condensation (81%). Emphasis was placed on differences of mechanical properties between sol-gel hybrids resulting from thiol-ene reaction (E-T mixture) and ene homopolymerization (E only) using scratch test measurements. For the methacrylate system, the formation of thioether linkages within a vitreous silica network emerged as a useful strategy for the formation of a uniform, low-stress and flexible crosslinked hybrid structure. Enhanced mechanical properties were manifested by an expanded elastic domain, and better resistance to cracking. Moreover, there are clear indications that mechanical properties can be easily tuned upon varying the ratio of the two hybrid precursors.
topic Nanocomposites
thiol-ene
photopolymerization
mechanical properties
UV irradiation
url http://www.expresspolymlett.com/letolt.php?file=EPL-0006764&mi=cd
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