Direct plasma treatment approach based on non-thermal gliding arc for surface modification of biaxially-oriented polypropylene with post-exposure hydrophilicity improvement and minus aging effects

Aging phenomenon or hydrophobic recovery of plasma-treated surfaces is a major concern in various fields of application. Post-plasma decay of treatment level can lead to problems such as delamination and incompatibility. Considerable work has been done to understand the fundamental mechanisms of agi...

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Main Authors: Darvish, Fahimeh, Mostofi Sarkari, Navid, Khani, Mohammadreza, Eslami, Esmaeil, Shokri, Babak, Mohseni, Mohsen, Ebrahimi, Morteza, Alizadeh, Mahdi, Dee, Chang Fu
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Published: Elsevier 2020
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Online Access:http://eprints.um.edu.my/36755/
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spelling my.um.eprints.367552024-11-06T00:52:09Z http://eprints.um.edu.my/36755/ Direct plasma treatment approach based on non-thermal gliding arc for surface modification of biaxially-oriented polypropylene with post-exposure hydrophilicity improvement and minus aging effects Darvish, Fahimeh Mostofi Sarkari, Navid Khani, Mohammadreza Eslami, Esmaeil Shokri, Babak Mohseni, Mohsen Ebrahimi, Morteza Alizadeh, Mahdi Dee, Chang Fu Q Science (General) QC Physics Aging phenomenon or hydrophobic recovery of plasma-treated surfaces is a major concern in various fields of application. Post-plasma decay of treatment level can lead to problems such as delamination and incompatibility. Considerable work has been done to understand the fundamental mechanisms of aging, from which several approaches have been developed to tackle it. Most of the released solutions require additional and further steps after or before the plasma exposure to stabilize the treatment level and prevent its downfall. This per se causes process difficulties and increases production costs. Herein, a single-step gliding arc plasma-based method is investigated for modification of biaxially-oriented polypropylene (BOPP). Findings approved post-treatment progressive hydrophilicity improvement in this method. Surface characteristics' alterations were assessed instantly after the treatment and with intervals during five weeks via ATR-FTIR, XPS, AFM, FESEM, GIXRD, and contact angle measurement (static and dynamic) in order to explain the plasma effects and aging findings. Results indicated that this treatment approach could make a significant contribution to the field of plasma surface treatment via introducing a feasible and fast method that can be carried out in a single step and at the atmospheric pressure with minus aging effects and without the unfavorable hydrophobic recovery phenomenon. Elsevier 2020-04 Article PeerReviewed Darvish, Fahimeh and Mostofi Sarkari, Navid and Khani, Mohammadreza and Eslami, Esmaeil and Shokri, Babak and Mohseni, Mohsen and Ebrahimi, Morteza and Alizadeh, Mahdi and Dee, Chang Fu (2020) Direct plasma treatment approach based on non-thermal gliding arc for surface modification of biaxially-oriented polypropylene with post-exposure hydrophilicity improvement and minus aging effects. Applied Surface Science, 509. ISSN 0169-4332, DOI https://doi.org/10.1016/j.apsusc.2019.144815 <https://doi.org/10.1016/j.apsusc.2019.144815>. 10.1016/j.apsusc.2019.144815
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic Q Science (General)
QC Physics
spellingShingle Q Science (General)
QC Physics
Darvish, Fahimeh
Mostofi Sarkari, Navid
Khani, Mohammadreza
Eslami, Esmaeil
Shokri, Babak
Mohseni, Mohsen
Ebrahimi, Morteza
Alizadeh, Mahdi
Dee, Chang Fu
Direct plasma treatment approach based on non-thermal gliding arc for surface modification of biaxially-oriented polypropylene with post-exposure hydrophilicity improvement and minus aging effects
description Aging phenomenon or hydrophobic recovery of plasma-treated surfaces is a major concern in various fields of application. Post-plasma decay of treatment level can lead to problems such as delamination and incompatibility. Considerable work has been done to understand the fundamental mechanisms of aging, from which several approaches have been developed to tackle it. Most of the released solutions require additional and further steps after or before the plasma exposure to stabilize the treatment level and prevent its downfall. This per se causes process difficulties and increases production costs. Herein, a single-step gliding arc plasma-based method is investigated for modification of biaxially-oriented polypropylene (BOPP). Findings approved post-treatment progressive hydrophilicity improvement in this method. Surface characteristics' alterations were assessed instantly after the treatment and with intervals during five weeks via ATR-FTIR, XPS, AFM, FESEM, GIXRD, and contact angle measurement (static and dynamic) in order to explain the plasma effects and aging findings. Results indicated that this treatment approach could make a significant contribution to the field of plasma surface treatment via introducing a feasible and fast method that can be carried out in a single step and at the atmospheric pressure with minus aging effects and without the unfavorable hydrophobic recovery phenomenon.
format Article
author Darvish, Fahimeh
Mostofi Sarkari, Navid
Khani, Mohammadreza
Eslami, Esmaeil
Shokri, Babak
Mohseni, Mohsen
Ebrahimi, Morteza
Alizadeh, Mahdi
Dee, Chang Fu
author_facet Darvish, Fahimeh
Mostofi Sarkari, Navid
Khani, Mohammadreza
Eslami, Esmaeil
Shokri, Babak
Mohseni, Mohsen
Ebrahimi, Morteza
Alizadeh, Mahdi
Dee, Chang Fu
author_sort Darvish, Fahimeh
title Direct plasma treatment approach based on non-thermal gliding arc for surface modification of biaxially-oriented polypropylene with post-exposure hydrophilicity improvement and minus aging effects
title_short Direct plasma treatment approach based on non-thermal gliding arc for surface modification of biaxially-oriented polypropylene with post-exposure hydrophilicity improvement and minus aging effects
title_full Direct plasma treatment approach based on non-thermal gliding arc for surface modification of biaxially-oriented polypropylene with post-exposure hydrophilicity improvement and minus aging effects
title_fullStr Direct plasma treatment approach based on non-thermal gliding arc for surface modification of biaxially-oriented polypropylene with post-exposure hydrophilicity improvement and minus aging effects
title_full_unstemmed Direct plasma treatment approach based on non-thermal gliding arc for surface modification of biaxially-oriented polypropylene with post-exposure hydrophilicity improvement and minus aging effects
title_sort direct plasma treatment approach based on non-thermal gliding arc for surface modification of biaxially-oriented polypropylene with post-exposure hydrophilicity improvement and minus aging effects
publisher Elsevier
publishDate 2020
url http://eprints.um.edu.my/36755/
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