Photoreactive UV-Crosslinkable Acrylic Pressure-Sensitive Adhesives (PSA) Containing Multifunctional Photoinitiators

The use of ultraviolet radiation (UV) technology for the crosslinking of acrylic pressure-sensitive adhesives (PSA) is the one of various crosslinking methods, being the alternative to the conventional crosslinking process of solvent-based acrylic systems. It also requires a photoinitiator to absorb...

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Main Authors: Marcin Bartkowiak, Zbigniew Czech, Hyun-Joong Kim, Gyu-Seong Shim, Małgorzata Nowak, Adrian Krzysztof Antosik
Format: Article
Language:English
Published: MDPI AG 2021-12-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/13/24/4413
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author Marcin Bartkowiak
Zbigniew Czech
Hyun-Joong Kim
Gyu-Seong Shim
Małgorzata Nowak
Adrian Krzysztof Antosik
author_facet Marcin Bartkowiak
Zbigniew Czech
Hyun-Joong Kim
Gyu-Seong Shim
Małgorzata Nowak
Adrian Krzysztof Antosik
author_sort Marcin Bartkowiak
collection DOAJ
description The use of ultraviolet radiation (UV) technology for the crosslinking of acrylic pressure-sensitive adhesives (PSA) is the one of various crosslinking methods, being the alternative to the conventional crosslinking process of solvent-based acrylic systems. It also requires a photoinitiator to absorb the impinging UV and induce photocrosslinking. As previously mentioned, a photoinitiator is one of the important and necessary components in UV-inducted crosslinking of acrylic pressure-sensitive adhesives. The activity of multifunctional conventional saturated photoinitiators of type I and type II, especially benzophenone-based in the photoreactive UV-crosslinkable acrylic PSA was described. The effect of the multifunctional type-II photoinitiators on the acrylic PSA, such as tack, peel adhesion and shear strength were summarized.
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spelling doaj.art-72e50356fe4c4a4e893c79371907d7c12023-11-23T10:16:01ZengMDPI AGPolymers2073-43602021-12-011324441310.3390/polym13244413Photoreactive UV-Crosslinkable Acrylic Pressure-Sensitive Adhesives (PSA) Containing Multifunctional PhotoinitiatorsMarcin Bartkowiak0Zbigniew Czech1Hyun-Joong Kim2Gyu-Seong Shim3Małgorzata Nowak4Adrian Krzysztof Antosik5Department of Chemical Organic Technology and Polymeric Materials, Faculty of Chemical Technology and Engineering, West Pomeranian University of Technology, Szczecin, Pułaskiego 10, 70-322 Szczecin, PolandDepartment of Chemical Organic Technology and Polymeric Materials, Faculty of Chemical Technology and Engineering, West Pomeranian University of Technology, Szczecin, Pułaskiego 10, 70-322 Szczecin, PolandLaboratory of Adhesion and Bio-Composites, Program in Environmental Materials Science, College of Agriculture and Life Sciences, Seoul National University, Seoul 08826, KoreaLaboratory of Adhesion and Bio-Composites, Program in Environmental Materials Science, College of Agriculture and Life Sciences, Seoul National University, Seoul 08826, KoreaDepartment of Chemical Organic Technology and Polymeric Materials, Faculty of Chemical Technology and Engineering, West Pomeranian University of Technology, Szczecin, Pułaskiego 10, 70-322 Szczecin, PolandDepartment of Chemical Organic Technology and Polymeric Materials, Faculty of Chemical Technology and Engineering, West Pomeranian University of Technology, Szczecin, Pułaskiego 10, 70-322 Szczecin, PolandThe use of ultraviolet radiation (UV) technology for the crosslinking of acrylic pressure-sensitive adhesives (PSA) is the one of various crosslinking methods, being the alternative to the conventional crosslinking process of solvent-based acrylic systems. It also requires a photoinitiator to absorb the impinging UV and induce photocrosslinking. As previously mentioned, a photoinitiator is one of the important and necessary components in UV-inducted crosslinking of acrylic pressure-sensitive adhesives. The activity of multifunctional conventional saturated photoinitiators of type I and type II, especially benzophenone-based in the photoreactive UV-crosslinkable acrylic PSA was described. The effect of the multifunctional type-II photoinitiators on the acrylic PSA, such as tack, peel adhesion and shear strength were summarized.https://www.mdpi.com/2073-4360/13/24/4413pressure-sensitive adhesivesmultifunctional photoinitiatorsUV-crosslinking
spellingShingle Marcin Bartkowiak
Zbigniew Czech
Hyun-Joong Kim
Gyu-Seong Shim
Małgorzata Nowak
Adrian Krzysztof Antosik
Photoreactive UV-Crosslinkable Acrylic Pressure-Sensitive Adhesives (PSA) Containing Multifunctional Photoinitiators
Polymers
pressure-sensitive adhesives
multifunctional photoinitiators
UV-crosslinking
title Photoreactive UV-Crosslinkable Acrylic Pressure-Sensitive Adhesives (PSA) Containing Multifunctional Photoinitiators
title_full Photoreactive UV-Crosslinkable Acrylic Pressure-Sensitive Adhesives (PSA) Containing Multifunctional Photoinitiators
title_fullStr Photoreactive UV-Crosslinkable Acrylic Pressure-Sensitive Adhesives (PSA) Containing Multifunctional Photoinitiators
title_full_unstemmed Photoreactive UV-Crosslinkable Acrylic Pressure-Sensitive Adhesives (PSA) Containing Multifunctional Photoinitiators
title_short Photoreactive UV-Crosslinkable Acrylic Pressure-Sensitive Adhesives (PSA) Containing Multifunctional Photoinitiators
title_sort photoreactive uv crosslinkable acrylic pressure sensitive adhesives psa containing multifunctional photoinitiators
topic pressure-sensitive adhesives
multifunctional photoinitiators
UV-crosslinking
url https://www.mdpi.com/2073-4360/13/24/4413
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AT hyunjoongkim photoreactiveuvcrosslinkableacrylicpressuresensitiveadhesivespsacontainingmultifunctionalphotoinitiators
AT gyuseongshim photoreactiveuvcrosslinkableacrylicpressuresensitiveadhesivespsacontainingmultifunctionalphotoinitiators
AT małgorzatanowak photoreactiveuvcrosslinkableacrylicpressuresensitiveadhesivespsacontainingmultifunctionalphotoinitiators
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