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NIR‐Sensitized Cationic and Hybrid Radical/Cationic Polymerization and Crosslinking

NIR‐sensitized cationic polymerization proceeded with good efficiency, as was demonstrated with epoxides, vinyl ether, and oxetane. A heptacyanine functioned as sensitizer while iodonium salt served as coinitiator. The anion adopts a special function in a series selected from fluorinated phosphates...

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Autores principales: Pang, Yulian, Shiraishi, Atsushi, Keil, Dietmar, Popov, Sergey, Strehmel, Veronika, Jiao, Hongjun, Gutmann, Jochen S., Zou, Yingquan, Strehmel, Bernd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7839698/
https://www.ncbi.nlm.nih.gov/pubmed/32964609
http://dx.doi.org/10.1002/anie.202010746
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author Pang, Yulian
Shiraishi, Atsushi
Keil, Dietmar
Popov, Sergey
Strehmel, Veronika
Jiao, Hongjun
Gutmann, Jochen S.
Zou, Yingquan
Strehmel, Bernd
author_facet Pang, Yulian
Shiraishi, Atsushi
Keil, Dietmar
Popov, Sergey
Strehmel, Veronika
Jiao, Hongjun
Gutmann, Jochen S.
Zou, Yingquan
Strehmel, Bernd
author_sort Pang, Yulian
collection PubMed
description NIR‐sensitized cationic polymerization proceeded with good efficiency, as was demonstrated with epoxides, vinyl ether, and oxetane. A heptacyanine functioned as sensitizer while iodonium salt served as coinitiator. The anion adopts a special function in a series selected from fluorinated phosphates (a: [PF(6)](−), b: [PF(3)(C(2)F(5))(3)](−), c: [PF(3)(n‐C(4)F(9))(3)](−)), aluminates (d: [Al(O‐t‐C(4)F(9))(4)](−), e: [Al(O(C(3)F(6))CH(3))(4)](−)), and methide [C(O‐SO(2)CF(3))(3)](−) (f). Vinyl ether showed the best cationic polymerization efficiency followed by oxetanes and oxiranes. DFT calculations provided a rough pattern regarding the electrostatic potential of each anion where d showed a better reactivity than e and b. Formation of interpenetrating polymer networks (IPNs) using trimethylpropane triacrylate and epoxides proceeded in the case of NIR‐sensitized polymerization where anion d served as counter ion in the initiator system. No IPN was formed by UV‐LED initiation using the same monomers but thioxanthone/iodonium salt as photoinitiator. Exposure was carried out with new NIR‐LED devices emitting at either 805 or 870 nm.
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spelling pubmed-78396982021-02-02 NIR‐Sensitized Cationic and Hybrid Radical/Cationic Polymerization and Crosslinking Pang, Yulian Shiraishi, Atsushi Keil, Dietmar Popov, Sergey Strehmel, Veronika Jiao, Hongjun Gutmann, Jochen S. Zou, Yingquan Strehmel, Bernd Angew Chem Int Ed Engl Research Articles NIR‐sensitized cationic polymerization proceeded with good efficiency, as was demonstrated with epoxides, vinyl ether, and oxetane. A heptacyanine functioned as sensitizer while iodonium salt served as coinitiator. The anion adopts a special function in a series selected from fluorinated phosphates (a: [PF(6)](−), b: [PF(3)(C(2)F(5))(3)](−), c: [PF(3)(n‐C(4)F(9))(3)](−)), aluminates (d: [Al(O‐t‐C(4)F(9))(4)](−), e: [Al(O(C(3)F(6))CH(3))(4)](−)), and methide [C(O‐SO(2)CF(3))(3)](−) (f). Vinyl ether showed the best cationic polymerization efficiency followed by oxetanes and oxiranes. DFT calculations provided a rough pattern regarding the electrostatic potential of each anion where d showed a better reactivity than e and b. Formation of interpenetrating polymer networks (IPNs) using trimethylpropane triacrylate and epoxides proceeded in the case of NIR‐sensitized polymerization where anion d served as counter ion in the initiator system. No IPN was formed by UV‐LED initiation using the same monomers but thioxanthone/iodonium salt as photoinitiator. Exposure was carried out with new NIR‐LED devices emitting at either 805 or 870 nm. John Wiley and Sons Inc. 2020-11-16 2021-01-18 /pmc/articles/PMC7839698/ /pubmed/32964609 http://dx.doi.org/10.1002/anie.202010746 Text en © 2020 The Authors. Published by Wiley-VCH GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Pang, Yulian
Shiraishi, Atsushi
Keil, Dietmar
Popov, Sergey
Strehmel, Veronika
Jiao, Hongjun
Gutmann, Jochen S.
Zou, Yingquan
Strehmel, Bernd
NIR‐Sensitized Cationic and Hybrid Radical/Cationic Polymerization and Crosslinking
title NIR‐Sensitized Cationic and Hybrid Radical/Cationic Polymerization and Crosslinking
title_full NIR‐Sensitized Cationic and Hybrid Radical/Cationic Polymerization and Crosslinking
title_fullStr NIR‐Sensitized Cationic and Hybrid Radical/Cationic Polymerization and Crosslinking
title_full_unstemmed NIR‐Sensitized Cationic and Hybrid Radical/Cationic Polymerization and Crosslinking
title_short NIR‐Sensitized Cationic and Hybrid Radical/Cationic Polymerization and Crosslinking
title_sort nir‐sensitized cationic and hybrid radical/cationic polymerization and crosslinking
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7839698/
https://www.ncbi.nlm.nih.gov/pubmed/32964609
http://dx.doi.org/10.1002/anie.202010746
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