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Research Article

MWCNT grafted with POSS-based novel flame retardant-filled epoxy resin nanocomposite: fabrication, mechanical properties, and flammability

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Pages 843-858 | Received 14 Mar 2020, Accepted 25 Aug 2020, Published online: 08 Sep 2020

References

  • Hong Y, You X, Zeng Y, et al. Air-plasma surface modification of epoxy resin substrate to improve electroless copper plating of printed circuit board. Vacuum. 2019;170:108967.
  • Zhu P, Chen Y, Wang LY, et al. The separation of waste printed circuit board by dissolving bromine epoxy resin using organic solvent. Waste Manage. 2013;33:484–488.
  • Kim Y-M, Han TU, Kim S, et al. Catalytic co-pyrolysis of epoxy-printed circuit board and plastics over HZSM-5 and HY. J Clean Prod. 2017;168:366–374.
  • Xing M, Li Y, Zhao L, et al. Swelling-enhanced catalytic degradation of brominated epoxy resin in waste printed circuit boards by subcritical acetic acid under mild conditions. Waste Manage. 2020;102:464–473.
  • Bao Q, Wang B, Liu Y, et al. Epoxy resin flame retarded and toughed via flexible siloxane chain containing phosphaphenanthrene. Polym Degrad Stabil. 2020;172:109055.
  • Bach Q-V, Vu CM, Nguyen DD, et al. Impacts of phosphorous-linked epoxidized vegetable oil on mechanical behaviors and flammability properties of silica reinforced epoxy composite. Thermochim Acta. 2020;691:178722.
  • Vu CM, Bach Q-V. Effects of DOPO-grafted epoxidized soybean oil on fracture toughness and flame retardant of epoxy resin/rice husk silica hybrid. Macromol Res. 2020;28:826–834.
  • Vu CM, Nguyen V-H, Bach Q-V. Phosphorous-jointed epoxidized soybean oil and rice husk-based silica as the novel additives for improvement mechanical and flame retardant of epoxy resin. J Fire Sci. 2020;38:3–27.
  • Chi Z, Guo Z, Xu Z, et al. A DOPO-based phosphorus-nitrogen flame retardant bio-based epoxy resin from diphenolic acid: synthesis, flame-retardant behavior and mechanism. Polym Degrad Stabil. 2020;176:109151.
  • Luo H, Rao W, Zhao P, et al. An efficient organic/inorganic phosphorus–nitrogen–silicon flame retardant towards low-flammability epoxy resin. Polym Degrad Stabil. 2020;178:109195.
  • Zou J, Duan H, Chen Y, et al. A P/N/S-containing high-efficiency flame retardant endowing epoxy resin with excellent flame retardance, mechanical properties and heat resistance. Compos B: Eng. 2020;199:108228.
  • Chena R, Luo Z, Yu X, et al. Synthesis of chitosan-based flame retardant and its fire resistance in epoxy resin. Carbohyd Polym. 2020;245:116530.
  • Chen H, Deng C, Zhao Z-Y, et al. Novel alkynyl-containing phosphonate ester oligomer with high charring capability as flame retardant additive for thermoplastic polyurethane. Compos B: Eng. 2020;199:108315.
  • Wang P, Chen L, Xiao H, et al. Nitrogen/sulfur-containing DOPO based oligomer for highly efficient flame-retardant epoxy resin. Polym Degrad Stabil. 2020;171:109023.
  • Lyu Y, Zhang Y, Ishida H. Intrinsically noncombustible polymers without flame retardant additives: sulfur-containing and bio-based benzoxazines. Eur Polym J. 2020;133:109770.
  • Yuan G, Yang B, Chen Y, et al. Synthesis of a novel multi-structure synergistic POSS-GO-DOPO ternary graft flame retardant and its application in polypropylene. Compos A. 2019;117:345–356.
  • Qu L, Sui Y, Zhang C, et al. POSS-functionalized graphene oxide hybrids with improved dispersive and smoke-suppressive properties for epoxy flame-retardant application. Eur Polym J. 2020;122:109383.
  • Itoh M. Polyhedral Oligomeric Silsesquioxanes (POSS). Encyclopedia Polymer Nanomater. 2014; DOI: https://doi.org/10.1007/978-3-642-36199-9_220-1
  • Turgut G, Dogan M, Tayfun U, et al. The effects of POSS particles on the flame retardancy of intumescent polypropylene composites and the structure-property relationship. Polym Degrad Stabil. 2018;149:96–111.
  • Bourbigot S, Turf T, Bellayer S, et al. Polyhedral oligomeric silsesquioxane as flame retardant for thermoplastic polyurethane. Polym Degrad Stabil. 2009;94:1230–1237.
  • Wu K, Song L, Hu Y, et al. Synthesis and characterization of a functional polyhedral oligomeric silsesquioxane and its flame retardancy in epoxy resin. Prog Org Coat. 2009;65:490–497.
  • Ye X, Li J, Zhang W, et al. Fabrication of eco-friendly and multifunctional sodium-containing polyhedral oligomeric silsesquioxane and its flame retardancy on epoxy resin. Compos B: Eng. 2020;191:107961.
  • Nosaka T, Lankone R, Westerhoff P, et al. Flame retardant performance of carbonaceous nanomaterials on polyester fabric. Polym Test. 2020;86:106497.
  • Pan Y-T, Zhang Z, Yang R. The rise of MOFs and their derivatives for flame retardant polymeric materials: acritical review. Compos B: Eng. 2020;199:108265.
  • Wang X, Yin Y, Li M, et al. Hexagonal boron Nitride@ZnFe2O4 hybrid nanosheet: an ecofriendly flame retardant for polyvinyl alcohol. J Solid State Chem. 2020;287:121366.
  • Zhang Z, Han Z, Pan Y-T, et al. Dry synthesis of mesoporous nanosheet assembly constructed by cyclomatrix polyphosphazene frameworks and its application in flame retardant polypropylene. Chem Eng J. 2020;395:125076.
  • Wang X, Guo W, Cai W, et al. Recent advances in construction of hybrid nano-structures for flame retardant polymers application. Appl Mater Today. 2020;20:100762.
  • Geng Y-J, Liu Z-H. Preparation and thermodynamic characterization of 2CaO·B2O3·H2O nanomaterials with enhanced flame retardant properties. Colloid Surf A. 2017;522:563–568.
  • Gu L, Qiu J, Yao Y, et al. Functionalized MWCNTs modified flame retardant PLA nanocomposites and cold rolling process for improving mechanical properties. Compos Sci Technol. 2018;161:39–49.
  • Murugesan B, Pandiyan N, Kasinathan K, et al. Fabrication of heteroatom doped NFP-MWCNT and NFB-MWCNT nanocomposite from imidazolium ionic liquid functionalized MWCNT for antibiofilm and wound healing in wistar rats: synthesis, characterization, in-vitro and in-vivo studies. Mater Sci Eng C. 2020;111:110791.
  • Bach QV, Vu CM, Vu HT, et al. Enhancing mode I and II interlaminar fracture toughness of carbon fiber-filled epoxy-based composites using both rice husk silica and silk fibroin electrospun nanofibers. High Perform Polym. 2019;31:1195–1203.
  • Mozafari V, Parsa JB. Electrochemical synthesis of Pd supported on PANI-MWCNT-SnO2 nanocomposite as a novel catalyst towards ethanol oxidation in alkaline media. Synth Met. 2020;259:116214.
  • Wang X, Song L, Yang HY, et al. Simultaneous reduction and surface functionalization of graphene oxide with POSS for reducing fire hazards in epoxy composites. J Mater Chem. 2012;22:22037–22043.
  • Shivakumar R, Bolker A, Tsang SH, et al. POSS enhanced 3D graphene - polyimide film for atomic oxygen endurance in low earth orbit space environment. Polymer. 2020;191:122270.
  • Jin S, Qian L, Qiu Y, et al. High-efficiency flame retardant behavior of bi-DOPO compound with hydroxyl group on epoxy resin. Polym Degrad Stab. 2019;166:344–352.

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