In-situ preparation of layered zinc N, N’-piperazine (bismethylene phosphonate) functionalizing reduced graphene oxide for epoxy resin with reduced fire hazards and improved thermal/mechanical properties
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Mechanics of Materials,Ceramics and Composites
Reference68 articles.
1. Facile synthesis of aluminum branched oligo(phenylphosphonate) submicro-particles with enhanced flame retardance and smoke toxicity suppression for epoxy resin composites;Yuan;J Hazard Mater.,2020
2. Synthesis of a novel phosphazene-based flame retardant with active amine groups and its application in reducing the fire hazard of Epoxy Resin;Yang;J Hazard Mater.,2019
3. Self-assembly fabrication of hollow mesoporous silica@ Co–Al layered double hydroxide@graphene and application in toxic effluents elimination;Jiang;ACS Appl Mater Inter.,2015
4. Synergistic effects of amine-modified ammonium polyphosphate on curing behaviors and flame retardation properties of epoxy composites;Kim;Compos Part B Eng.,2019
5. Facile synthesis of a novel transparent hyperbranched phosphorous/nitrogen-containing flame retardant and its application in reducing the fire hazard of epoxy resin;Hu;J Hazard Mater.,2019
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