Further discussion on the reaction behaviour of triallyl isocyanurate in the UV radiation cross-linking process of polyethylene: a theoretical study

Further theoretical investigation on the reaction behaviour of triallyl isocyanurate (TAIC) in the UV radiation cross-linking process of polyethylene (PE) is accomplished by density functional theory for high voltage cable insulation materials. The reaction potential energy information of the 13 rea...

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Main Authors: Hui Zhang, Yan Shang, Hong Zhao, Xuan Wang, Baozhong Han, Zesheng Li
Format: Article
Language:English
Published: The Royal Society 2019-09-01
Series:Royal Society Open Science
Subjects:
Online Access:https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.182196
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spelling doaj-db9879a912f0468f82c92780d870d9db2020-11-25T04:05:29ZengThe Royal SocietyRoyal Society Open Science2054-57032019-09-016910.1098/rsos.182196182196Further discussion on the reaction behaviour of triallyl isocyanurate in the UV radiation cross-linking process of polyethylene: a theoretical studyHui ZhangYan ShangHong ZhaoXuan WangBaozhong HanZesheng LiFurther theoretical investigation on the reaction behaviour of triallyl isocyanurate (TAIC) in the UV radiation cross-linking process of polyethylene (PE) is accomplished by density functional theory for high voltage cable insulation materials. The reaction potential energy information of the 13 reaction channels at B3LYP/6–311 + G(d,p) level are identified. These have been explored that the TAIC take part in the reaction behaviour on ground state during UV radiation cross-linking process and TAIC intra-molecular isomerization reaction itself. In addition, the results show that the effect of multiplication and acceleration for the cross-linking reaction of trimethylopropane trimethacrylate (TMPTMA) would be better than that of TAIC. It has further clarified the reasons why UV radiation cross-linking reaction of PE had been initiated by benzophenone (Bp), and the TAIC or TMPTMA needed to take part. The results obtained in the present study could directly guide both the optimization of UV radiation cross-linking PE process and the development of the insulation material of high-voltage cable in real application.https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.182196triallyl isocyanurateuv radiation cross-linking polyethylene processtransition states
collection DOAJ
language English
format Article
sources DOAJ
author Hui Zhang
Yan Shang
Hong Zhao
Xuan Wang
Baozhong Han
Zesheng Li
spellingShingle Hui Zhang
Yan Shang
Hong Zhao
Xuan Wang
Baozhong Han
Zesheng Li
Further discussion on the reaction behaviour of triallyl isocyanurate in the UV radiation cross-linking process of polyethylene: a theoretical study
Royal Society Open Science
triallyl isocyanurate
uv radiation cross-linking polyethylene process
transition states
author_facet Hui Zhang
Yan Shang
Hong Zhao
Xuan Wang
Baozhong Han
Zesheng Li
author_sort Hui Zhang
title Further discussion on the reaction behaviour of triallyl isocyanurate in the UV radiation cross-linking process of polyethylene: a theoretical study
title_short Further discussion on the reaction behaviour of triallyl isocyanurate in the UV radiation cross-linking process of polyethylene: a theoretical study
title_full Further discussion on the reaction behaviour of triallyl isocyanurate in the UV radiation cross-linking process of polyethylene: a theoretical study
title_fullStr Further discussion on the reaction behaviour of triallyl isocyanurate in the UV radiation cross-linking process of polyethylene: a theoretical study
title_full_unstemmed Further discussion on the reaction behaviour of triallyl isocyanurate in the UV radiation cross-linking process of polyethylene: a theoretical study
title_sort further discussion on the reaction behaviour of triallyl isocyanurate in the uv radiation cross-linking process of polyethylene: a theoretical study
publisher The Royal Society
series Royal Society Open Science
issn 2054-5703
publishDate 2019-09-01
description Further theoretical investigation on the reaction behaviour of triallyl isocyanurate (TAIC) in the UV radiation cross-linking process of polyethylene (PE) is accomplished by density functional theory for high voltage cable insulation materials. The reaction potential energy information of the 13 reaction channels at B3LYP/6–311 + G(d,p) level are identified. These have been explored that the TAIC take part in the reaction behaviour on ground state during UV radiation cross-linking process and TAIC intra-molecular isomerization reaction itself. In addition, the results show that the effect of multiplication and acceleration for the cross-linking reaction of trimethylopropane trimethacrylate (TMPTMA) would be better than that of TAIC. It has further clarified the reasons why UV radiation cross-linking reaction of PE had been initiated by benzophenone (Bp), and the TAIC or TMPTMA needed to take part. The results obtained in the present study could directly guide both the optimization of UV radiation cross-linking PE process and the development of the insulation material of high-voltage cable in real application.
topic triallyl isocyanurate
uv radiation cross-linking polyethylene process
transition states
url https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.182196
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