Cargando…

Graphene Nanoplatelets Hybrid Flame Retardant Containing Ionic Liquid and Ammonium Polyphosphate for Modified Bismaleimide Resin: Excellent Flame Retardancy, Thermal Stability, Water Resistance and Unique Dielectric Properties

To achieve the requirements of modified bismaleimide resin composites in electronic industry and high energy storage devices, flame retardancy, water resistance and dielectric properties must be improved. Hence, a highly efficient multifunctional graphene nanoplatelets hybrid flame retardant is prep...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Yan, Jia, Xining, Shi, Hui, Hao, Jianwei, Qu, Hongqiang, Wang, Jingyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8585335/
https://www.ncbi.nlm.nih.gov/pubmed/34771931
http://dx.doi.org/10.3390/ma14216406
_version_ 1784597665050263552
author Wang, Yan
Jia, Xining
Shi, Hui
Hao, Jianwei
Qu, Hongqiang
Wang, Jingyu
author_facet Wang, Yan
Jia, Xining
Shi, Hui
Hao, Jianwei
Qu, Hongqiang
Wang, Jingyu
author_sort Wang, Yan
collection PubMed
description To achieve the requirements of modified bismaleimide resin composites in electronic industry and high energy storage devices, flame retardancy, water resistance and dielectric properties must be improved. Hence, a highly efficient multifunctional graphene nanoplatelets hybrid flame retardant is prepared by ionic liquid graphite and ammonium polyphosphate. The preparation processes of the flame retardants are simple, low energy consumption and follow the green chemical concept of 100% utilization of raw materials, compared with chemical stripping. The bismaleimide resin containing 10 wt.% of the flame retardant show good flame retardancy, resulting in the limiting oxygen index increases to above 43%, and the peak heat release rate, total heat release and total smoke release decrease by 41.8%, 47.8% and 52.3%, respectively. After soaking, mass loss percentage of the modified bismaleimide resin only decreases by 0.96%, the dielectric constant of the composite increases by 39.4%, and the dielectric loss decreases with the increase of frequency. The hybrid flame retardants show multifunctional effect in the modified bismaleimide resin, due to the physical barrier, the chemical char-formation, hydrophobicity and strong conductivity attributed to co-work of Graphene nanoplatelets, ammonium polyphosphate and ionic liquid.
format Online
Article
Text
id pubmed-8585335
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-85853352021-11-12 Graphene Nanoplatelets Hybrid Flame Retardant Containing Ionic Liquid and Ammonium Polyphosphate for Modified Bismaleimide Resin: Excellent Flame Retardancy, Thermal Stability, Water Resistance and Unique Dielectric Properties Wang, Yan Jia, Xining Shi, Hui Hao, Jianwei Qu, Hongqiang Wang, Jingyu Materials (Basel) Article To achieve the requirements of modified bismaleimide resin composites in electronic industry and high energy storage devices, flame retardancy, water resistance and dielectric properties must be improved. Hence, a highly efficient multifunctional graphene nanoplatelets hybrid flame retardant is prepared by ionic liquid graphite and ammonium polyphosphate. The preparation processes of the flame retardants are simple, low energy consumption and follow the green chemical concept of 100% utilization of raw materials, compared with chemical stripping. The bismaleimide resin containing 10 wt.% of the flame retardant show good flame retardancy, resulting in the limiting oxygen index increases to above 43%, and the peak heat release rate, total heat release and total smoke release decrease by 41.8%, 47.8% and 52.3%, respectively. After soaking, mass loss percentage of the modified bismaleimide resin only decreases by 0.96%, the dielectric constant of the composite increases by 39.4%, and the dielectric loss decreases with the increase of frequency. The hybrid flame retardants show multifunctional effect in the modified bismaleimide resin, due to the physical barrier, the chemical char-formation, hydrophobicity and strong conductivity attributed to co-work of Graphene nanoplatelets, ammonium polyphosphate and ionic liquid. MDPI 2021-10-26 /pmc/articles/PMC8585335/ /pubmed/34771931 http://dx.doi.org/10.3390/ma14216406 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Yan
Jia, Xining
Shi, Hui
Hao, Jianwei
Qu, Hongqiang
Wang, Jingyu
Graphene Nanoplatelets Hybrid Flame Retardant Containing Ionic Liquid and Ammonium Polyphosphate for Modified Bismaleimide Resin: Excellent Flame Retardancy, Thermal Stability, Water Resistance and Unique Dielectric Properties
title Graphene Nanoplatelets Hybrid Flame Retardant Containing Ionic Liquid and Ammonium Polyphosphate for Modified Bismaleimide Resin: Excellent Flame Retardancy, Thermal Stability, Water Resistance and Unique Dielectric Properties
title_full Graphene Nanoplatelets Hybrid Flame Retardant Containing Ionic Liquid and Ammonium Polyphosphate for Modified Bismaleimide Resin: Excellent Flame Retardancy, Thermal Stability, Water Resistance and Unique Dielectric Properties
title_fullStr Graphene Nanoplatelets Hybrid Flame Retardant Containing Ionic Liquid and Ammonium Polyphosphate for Modified Bismaleimide Resin: Excellent Flame Retardancy, Thermal Stability, Water Resistance and Unique Dielectric Properties
title_full_unstemmed Graphene Nanoplatelets Hybrid Flame Retardant Containing Ionic Liquid and Ammonium Polyphosphate for Modified Bismaleimide Resin: Excellent Flame Retardancy, Thermal Stability, Water Resistance and Unique Dielectric Properties
title_short Graphene Nanoplatelets Hybrid Flame Retardant Containing Ionic Liquid and Ammonium Polyphosphate for Modified Bismaleimide Resin: Excellent Flame Retardancy, Thermal Stability, Water Resistance and Unique Dielectric Properties
title_sort graphene nanoplatelets hybrid flame retardant containing ionic liquid and ammonium polyphosphate for modified bismaleimide resin: excellent flame retardancy, thermal stability, water resistance and unique dielectric properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8585335/
https://www.ncbi.nlm.nih.gov/pubmed/34771931
http://dx.doi.org/10.3390/ma14216406
work_keys_str_mv AT wangyan graphenenanoplateletshybridflameretardantcontainingionicliquidandammoniumpolyphosphateformodifiedbismaleimideresinexcellentflameretardancythermalstabilitywaterresistanceanduniquedielectricproperties
AT jiaxining graphenenanoplateletshybridflameretardantcontainingionicliquidandammoniumpolyphosphateformodifiedbismaleimideresinexcellentflameretardancythermalstabilitywaterresistanceanduniquedielectricproperties
AT shihui graphenenanoplateletshybridflameretardantcontainingionicliquidandammoniumpolyphosphateformodifiedbismaleimideresinexcellentflameretardancythermalstabilitywaterresistanceanduniquedielectricproperties
AT haojianwei graphenenanoplateletshybridflameretardantcontainingionicliquidandammoniumpolyphosphateformodifiedbismaleimideresinexcellentflameretardancythermalstabilitywaterresistanceanduniquedielectricproperties
AT quhongqiang graphenenanoplateletshybridflameretardantcontainingionicliquidandammoniumpolyphosphateformodifiedbismaleimideresinexcellentflameretardancythermalstabilitywaterresistanceanduniquedielectricproperties
AT wangjingyu graphenenanoplateletshybridflameretardantcontainingionicliquidandammoniumpolyphosphateformodifiedbismaleimideresinexcellentflameretardancythermalstabilitywaterresistanceanduniquedielectricproperties