Cargando…

Preparation and properties of long chain branched high-density polyethylene based on nano-SiO(2) grafted glycidyl methacrylate

A compounded nanoparticle with multiple double bonds (C[double bond, length as m-dash]C) was prepared by grafting glycidyl methacrylate (GMA) onto the surface of nano-SiO(2). Then gel-free long chain branched polyethylene (LCBPE) was prepared by melt branching reaction in a Haake torque rheometer in...

Descripción completa

Detalles Bibliográficos
Autores principales: Xie, Lijin, Liang, Xiaokun, Huang, Hongwei, Yang, Le, Zhang, Feng, Li, Xiaolong, Luo, Zhu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9059535/
https://www.ncbi.nlm.nih.gov/pubmed/35517616
http://dx.doi.org/10.1039/c8ra08061e
_version_ 1784698332825780224
author Xie, Lijin
Liang, Xiaokun
Huang, Hongwei
Yang, Le
Zhang, Feng
Li, Xiaolong
Luo, Zhu
author_facet Xie, Lijin
Liang, Xiaokun
Huang, Hongwei
Yang, Le
Zhang, Feng
Li, Xiaolong
Luo, Zhu
author_sort Xie, Lijin
collection PubMed
description A compounded nanoparticle with multiple double bonds (C[double bond, length as m-dash]C) was prepared by grafting glycidyl methacrylate (GMA) onto the surface of nano-SiO(2). Then gel-free long chain branched polyethylene (LCBPE) was prepared by melt branching reaction in a Haake torque rheometer in the presence of initiator peroxide and GMA grafted nano-SiO(2) (SiO(2)-g-GMA). The sampling time corresponded to the summit of the reaction peak in the torque curve. Fourier transform infrared results indicated that SiO(2)-g-GMA had been grafted onto the HDPE backbone via radical reaction. The reaction mechanism and the topological structure of the PE products are also discussed. Rheological results showed that the relaxation time and molecular weight distribution of modified PE were increased owing to the introduction of LCB structure, and the more SiO(2)-g-GMA was added, the more apparent variation could be observed. Compared with linear HDPE, both the melt strength and mechanical properties of LCBPE were improved obviously. From the differential scanning calorimetry and polarized optical microscopy results, smaller crystal size and lower growth rate were observed compared with linear HDPE, which are ascribed to the nucleation and restriction of long branching chains in the system. Well distributed nano-SiO(2) without any agglomeration in the PE matrix was observed in the scanning electron microscope images when the SiO(2)-g-GMA content was less than 3 phr.
format Online
Article
Text
id pubmed-9059535
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90595352022-05-04 Preparation and properties of long chain branched high-density polyethylene based on nano-SiO(2) grafted glycidyl methacrylate Xie, Lijin Liang, Xiaokun Huang, Hongwei Yang, Le Zhang, Feng Li, Xiaolong Luo, Zhu RSC Adv Chemistry A compounded nanoparticle with multiple double bonds (C[double bond, length as m-dash]C) was prepared by grafting glycidyl methacrylate (GMA) onto the surface of nano-SiO(2). Then gel-free long chain branched polyethylene (LCBPE) was prepared by melt branching reaction in a Haake torque rheometer in the presence of initiator peroxide and GMA grafted nano-SiO(2) (SiO(2)-g-GMA). The sampling time corresponded to the summit of the reaction peak in the torque curve. Fourier transform infrared results indicated that SiO(2)-g-GMA had been grafted onto the HDPE backbone via radical reaction. The reaction mechanism and the topological structure of the PE products are also discussed. Rheological results showed that the relaxation time and molecular weight distribution of modified PE were increased owing to the introduction of LCB structure, and the more SiO(2)-g-GMA was added, the more apparent variation could be observed. Compared with linear HDPE, both the melt strength and mechanical properties of LCBPE were improved obviously. From the differential scanning calorimetry and polarized optical microscopy results, smaller crystal size and lower growth rate were observed compared with linear HDPE, which are ascribed to the nucleation and restriction of long branching chains in the system. Well distributed nano-SiO(2) without any agglomeration in the PE matrix was observed in the scanning electron microscope images when the SiO(2)-g-GMA content was less than 3 phr. The Royal Society of Chemistry 2019-01-09 /pmc/articles/PMC9059535/ /pubmed/35517616 http://dx.doi.org/10.1039/c8ra08061e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Xie, Lijin
Liang, Xiaokun
Huang, Hongwei
Yang, Le
Zhang, Feng
Li, Xiaolong
Luo, Zhu
Preparation and properties of long chain branched high-density polyethylene based on nano-SiO(2) grafted glycidyl methacrylate
title Preparation and properties of long chain branched high-density polyethylene based on nano-SiO(2) grafted glycidyl methacrylate
title_full Preparation and properties of long chain branched high-density polyethylene based on nano-SiO(2) grafted glycidyl methacrylate
title_fullStr Preparation and properties of long chain branched high-density polyethylene based on nano-SiO(2) grafted glycidyl methacrylate
title_full_unstemmed Preparation and properties of long chain branched high-density polyethylene based on nano-SiO(2) grafted glycidyl methacrylate
title_short Preparation and properties of long chain branched high-density polyethylene based on nano-SiO(2) grafted glycidyl methacrylate
title_sort preparation and properties of long chain branched high-density polyethylene based on nano-sio(2) grafted glycidyl methacrylate
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9059535/
https://www.ncbi.nlm.nih.gov/pubmed/35517616
http://dx.doi.org/10.1039/c8ra08061e
work_keys_str_mv AT xielijin preparationandpropertiesoflongchainbranchedhighdensitypolyethylenebasedonnanosio2graftedglycidylmethacrylate
AT liangxiaokun preparationandpropertiesoflongchainbranchedhighdensitypolyethylenebasedonnanosio2graftedglycidylmethacrylate
AT huanghongwei preparationandpropertiesoflongchainbranchedhighdensitypolyethylenebasedonnanosio2graftedglycidylmethacrylate
AT yangle preparationandpropertiesoflongchainbranchedhighdensitypolyethylenebasedonnanosio2graftedglycidylmethacrylate
AT zhangfeng preparationandpropertiesoflongchainbranchedhighdensitypolyethylenebasedonnanosio2graftedglycidylmethacrylate
AT lixiaolong preparationandpropertiesoflongchainbranchedhighdensitypolyethylenebasedonnanosio2graftedglycidylmethacrylate
AT luozhu preparationandpropertiesoflongchainbranchedhighdensitypolyethylenebasedonnanosio2graftedglycidylmethacrylate