[1] | ZHU Deqin,ZHENG Shouyang,SHENG Yu.Flame-retardant Synergistic Effect of Synergists on Intumescent Flame-retardant Wood Flour-Polypropylene Composites[J]. Chinese J Appl Chem,2017,34(2):195-203(in Chinese). 朱德钦,郑守扬,生瑜. 协效剂对膨胀阻燃聚丙烯基木塑复合材料的阻燃增效研究[J]. 应用化学,2017,34(2):195-203. | [2] | GAO Yuan,CHEN Guohua.Recent Progress in Preparation Method of the Polymer/Graphene Composites and It's Industrialization Status[J]. Acta Polym Sin,2014,(10):1314-1327(in Chinese). 高源,陈国华. 聚合物/石墨烯复合材料制备研究新进展及其产业化现状[J]. 高分子学报,2014,(10):1314-1327. | [3] | WANG Ziying,SHEN Yifeng,YANG Lei,et al.Application of Vinyl Nitrogen Phosphorus Flame Retardants on Silk Fabric[J]. J Text Res,2015,36(7):77-82(in Chinese). 王紫颖,沈一峰,杨雷,等. 乙烯基磷氮类阻燃剂在蚕丝织物上的应用[J]. 纺织学报,2015,36(7):77-82. | [4] | ZHANG Jinkai,MA Li,GE Weijuan,et al.Research Status of Intumescent Flame-retarded Polypropylene[J]. Mater Rev A,2015,29(5):68-72(in Chinese). 张金凯,马丽,葛维娟,等. 膨胀型阻燃剂阻燃聚丙烯的研究进展[J]. 材料导报A,2015,29(5):68-72. | [5] | FAN Quanbao,XIE Ting,YANG Eryan,et al.Effect of Carbonate Oligomer of Tetrabromobisphenol A on Flame Retardance of Polycarbonate[J]. Plast Sci Technol,2010,38(1):43-45(in Chinese). 范全保,谢婷,杨二钘,等. 苯氧基四溴双酚A聚碳酸酯齐聚物对聚碳酸酯阻燃性能的影响[J]. 塑料科技,2010,38(1):43-45. | [6] | LI Xingjian,ZHANG Yiheng,SUN Daoxing.Preparation and Properties of Magnesium Hydroxide/Aluminum Hydroxide/Melamine Phosphate Filled Flame Retardant Silicone Rubber[J]. China Rubber Ind,2013,60(6):344-350(in Chinese). 李兴建,张宜恒,孙道兴. 氢氧化镁/氢氧化铝/三聚氰胺磷酸盐协效无卤膨胀型阻燃硅橡胶的制备与性能研究[J]. 橡胶工业,2013,60(6):344-350. | [7] | Ran S,Guo Z,Han L,et al.Effect of Friedel-Crafts Reaction on the Thermal Stability and Flammability of High-Density Polyethylene/Brominated Polystyrene/Graphene Nanoplatelet Composites[J]. Polym Int,2014,63(10):1835-1841. | [8] | Ran S,Chen C,Guo Z,et al.Char Barrier Effect of Graphene Nanoplatelets on the Flame Retardancy and Thermal Stability of High-Density Polyethylene Flame-Retarded by Brominated Polystyrene[J]. J Appl Polym Sci,2014,131(15):4401-4404. | [9] | Hu W,Zhan J,Wang X,et al.Effect of Functionalized Graphene Oxide with Hyper-Branched Flame Retardant on Flammability and Thermal Stability of Cross-Linked Polyethylene[J]. Ind Eng Chem Res,2014,53(13):3073-3083. | [10] | Dittrich B,Wartig K,Hofmann D,et al.Flame Retardancy Through Carbon Nanomaterials: Carbon Black, Multiwall Nanotubes, Expanded Graphite, Multi-Layer Graphene and Graphene in Polypropylene[J]. Polym Degrad Stabil,2013,98(8):1495-1505. | [11] | Hofmann D,Wartig K,Thomann R,et al.Functionalized Graphene and Carbon Materials as Additives for Melt-Extruded Flame Retardant Polypropylene[J]. Macromol Mater Eng,2013,298(12):1322-1334. | [12] | Dittrich B,Wartig K,Hofmann D,et al.Carbon Black, Multiwall Carbon Nanotubes, Expanded Graphite and Functionalized Graphene Flame Retarded Polypropylene Nanocomposites[J]. Polym Adv Technol,2013,24(10):916-926. | [13] | Huang G,Wang S,Song P,et al.Combination Effect of Carbon Nanotubes with Graphene on Intumescent Flame-Retardant Polypropylene Nanocomposites[J]. Composites:Part A,2014,59:18-25. | [14] | Xu J,Liu J,Li K.Application of Functionalized Graphene Oxide in Flame-Retardant Polypropylene[J]. J Vinyl Addit Tech,2015,21(4):278-284. | [15] | Dong L,Hu C,Song L,et al.A Large-Area, Flexible, and Flame-Retardant Graphene Paper[J]. Adv Funct Mater,2016,26(9):1470-1476. | [16] | Hu C,Xue J,Dong L,et al.Scalable Preparation of Multifunctional Fire-Retardant Ultralight Graphene Foams[J]. ACS Nano,2016,10(1):1325-1332. | [17] | Chen W,Liu Y,Lin P,et al.The Preparation and Application of a Graphene-based Hybrid Flame Retardant Containing a Long-Chain Phosphaphenanthrene[J]. Sci Rep,2017,7(1):8759. | [18] | Yu B,Wang X,Qian X,et al.Functionalized Graphene Oxide/Phosphoramide Oligomer Hybrids Flame Retardant Prepared via in Situ Polymerization for Improving the Fire Safety of Polypropylene[J]. RSC Adv,2014,4(60):31782-31794. | [19] | Dittrich B,Wartig K,M lhaupt R,et al. Flame-Retardancy Properties of Intumescent Ammonium Poly(phosphate) and Mineral Filler Magnesium Hydroxide in Combination with Graphene[J]. Polymers,2014,6(11):2875-2895. | [20] | Nie L,Liu C,Liu L,et al.Study of the Thermal Stability and Flame Retardant Properties of Graphene Oxide-Decorated Zirconium Organophosphate Based on Polypropylene Nanocomposites[J]. RSC Adv,2015,5(112):92318-92327. | [21] | Yuan B,Bao C,Song L,et al.Preparation of Functionalized Graphene Oxide/Polypropylene Nanocomposite with Significantly Improved Thermal Stability and Studies on the Crystallization Behavior and Mechanical Properties[J]. Chem Eng J,2014,237:411-420. | [22] | Yuan B,Song L,Liew K,et al.Solid Acid-reduced Graphene Oxide Nanohybrid for Enhancing Thermal Stability, Mechanical Property and Flame Retardancy of Polypropylene[J]. RSC Adv,2015,5(51):41307-41316. | [23] | Yuan B,Sheng H,Mu X,et al.Enhanced Flame Retardancy of Polypropylene by Melamine-Modified Graphene Oxide[J]. J Mater Sci,2015,50(16):5389-5401. | [24] | Ren P G,Yan D X,Chen T,et al.Improved Properties of Highly Oriented Graphene/Polymer Nanocomposites[J]. J Appl Polym Sci,2011,121(6):3167-3174. | [25] | Bao C,Guo Y,Yuan B,et al.Functionalized Graphene Oxide for Fire Safety Applications of Polymers:A Combination of Condensed Phase Flame Retardant Strategies[J]. J Mater Chem,2012,22(43):23057-23063. | [26] | Han Y,Wu Y,Shen M,et al.Preparation and Properties of Polystyrene Nanocomposites with Graphite Oxide and Graphene as Flame Retardants[J]. J Mater Sci,2013,48(12):4214-4222. | [27] | Zhou K,Yang W,Tang G,et al.Comparative Study on the Thermal Stability, Flame Retardancy and Smoke Suppression Properties of Polystyrene Composites Containing Molybdenum Disulfide and Graphene[J]. RSC Adv,2013,3(47):25030-25040. | [28] | Attia N,Abd El-Aal N,Hassan M. Facile Synthesis of Graphene Sheets Decorated Nanoparticles and Flammability of Their Polymer Nanocomposites[J]. Polym Degrad Stabil,2016,126:65-74. | [29] | Hong N,Zhan J,Wang X,et al.Enhanced Mechanical, Thermal and Flame Retardant Properties by Combining Graphene Nanosheets and Metal Hydroxide Nanorods for Acrylonitrile-Butadiene-Styrene Copolymer Composite[J]. Composites:Part A,2014,64:203-210. | [30] | Higginbotham A,Lomeda J,Morgan A,et al.Graphite Oxide Flame-Retardant Polymer Nanocomposites[J]. ACS Appl Mater Interfaces,2009,1(10):2256-2261. | [31] | Hu W,Yu B,Jiang S,et al.Hyper-branched Polymer Grafting Graphene Oxide as an Effective Flame Retardant and Smoke Suppressant for Polystyrene[J]. J Hazard Mater,2015,300:58-66. | [32] | Zhuo D,Wang R,Wu L,et al.Flame Retardancy Effects of Graphene Nanoplatelet/Carbon Nanotube Hybrid Membranes on Carbon Fiber Reinforced Epoxy Composites[J]. J Nanomater,2013,2013(1):820901. | [33] | Li Q,Guo Y,Li W,et al.Ultrahigh Thermal Conductivity of Assembled Aligned Multilayer Graphene/Epoxy Composite[J]. Chem Mater,2014,26(15):4459-4465. | [34] | Luo F,Wu K,Guo H,et al.Anisotropic Thermal Conductivity and Flame Retardancy of Nanocomposite Based on Mesogenic Epoxy and Reduced Graphene Oxide Bulk[J]. Compos Sci Technol,2016,132:1-8. | [35] | Liu S,Yan H,Fang Z,et al.Effect of Graphene Nanosheets on Morphology, Thermal Stability and Flame Retardancy of Epoxy Resin[J]. Compos Sci Technol,2014,90:40-47. | [36] | Wang R,Zhuo D,Weng Z,et al.A Novel Nanosilica/Graphene Oxide Hybrid and Its Flame Retarding Epoxy Resin with Simultaneously Improved Mechanical, Thermal Conductivity, and Dielectric Properties[J]. J Mater Chem A,2015,3(18):9826-9836. | [37] | Wang X,Xing W,Feng X,et al.The Effect of Metal Oxide Decorated Graphene Hybrids on the Improved Thermal Stability and the Reduced Smoke Toxicity in Epoxy Resins[J]. Chem Eng J,2014,250:214-221. | [38] | Guan F,Gui C,Zhang H,et al.Enhanced Thermal Conductivity and Satisfactory Flame Retardancy of Epoxy/Alumina Composites by Combination with Graphene Nanoplatelets and Magnesium Hydroxide[J]. Composites Part B,2016,98:134-140. | [39] | Liu S,Yan H,Fang Z,et al.Effect of Graphene Nanosheets and Layered Double Hydroxides on the Flame Retardancy and Thermal Degradation of Epoxy Resin[J]. RSC Adv,2014,4(36):18652-18659. | [40] | Guo Y,Bao C,Song L,et al.In Situ Polymerization of Graphene, Graphite Oxide, and Functionalized Graphite Oxide into Epoxy Resin and Comparison Study of On-the-Flame Behavior[J]. Ind Eng Chem Res,2011,50(13):7772-7783. | [41] | Liu S,Fang Z,Yan H,et al.Superior Flame Retardancy of Epoxy Resin by the Combined Addition of Graphene Nanosheets and DOPO[J]. RSC Adv,2016,6(7):5288-5295. | [42] | Liao S,Liu P,Hsiao M,et al.One-Step Reduction and Functionalization of Graphene Oxide with Phosphorus-Based Compound to Produce Flame-Retardant Epoxy Nanocomposite[J]. Ind Eng Chem Res,2012,51(12):4573-4581. | [43] | Wang X,Song L,Pornwannchai W,et al.The Effect of Graphene Presence in Flame Retarded Epoxy Resin Matrix on the Mechanical and Flammability Properties of Glass Fiber-reinforced Composites[J]. Composites:Part A,2013,53:88-96. | [44] | Wang Z,Wei P,Qian Y,et al.The Synthesis of a Novel Graphene-based Inorganic Organic Hybrid Flame Retardant and Its Application in Epoxy Resin[J]. Composites:Part B,2014,60:341-349. | [45] | Yu B,Shi Y,Yuan B,et al, Enhanced Thermal and Flame Retardant Properties of Flame-retardant-wrapped Graphene/Epoxy Resin Nanocomposites[J]. J Mater Chem A,2015,3(15):8034-8044. | [46] | Qian X,Song L,Yu B,et al.Novel Organic inorganic Flame Retardants Containing Exfoliated Graphene:Preparation and Their Performance on the Flame Retardancy of Epoxy Resins[J]. J Mater Chem A,2013,1(23):6822-6830. | [47] | Wang X,Xing W,Feng X,et al.Functionalization of Graphene with Grafted Polyphosphamide for Flame Retardant Epoxy Composites:Synthesis, Flammability and Mechanism[J]. Polym Chem,2014,5(4):1145-1154. | [48] | Hu J,Zhang F.Self-assembled Fabrication and Flame-Retardant Properties of Reduced Graphene Oxide/Waterborne Polyurethane Nanocomposites[J]. J Therm Anal Calorim,2014,118(3):1561-1568. | [49] | Zhou K,Gui Z,Hu Y,et al.The Influence of Cobalt Oxide Graphene Hybrids on Thermal Degradation, Fire Hazards and Mechanical Properties of Thermoplastic Polyurethane Composites[J]. Composites:Part A,2016,88:10-18. | [50] | Wang Z,Li X. Mechanical Properties and Flame Retardancy of Rigid Polyurethane Foams Containing a SiO2 Nanospheres/Graphene Oxide Hybrid and Dimethyl Methylphosphonate[J/OL]. J Polym-Plast Technol Eng,2017-07-20.[2018-01-03]. https://doi.org/10.1080/03602559.2017.1354251.[published online ahead of print] | [51] | Pan H,Lu Y,Song L,et al.Fabrication of Binary Hybrid-Filled Layer-by-Layer Coatings on Flexible Polyurethane Foams and Studies on Their Flame-Retardant and Thermal Properties[J]. RSC Adv,2016,6(82):78286-78295. | [52] | Wei H,Zhu Z,Sun H,et al.Graphene and Poly(ionic liquid) Modified Polyurethane Sponges with Enhanced Flame-Retardant Properties[J]. J Appl Polym Sci,2017,134(44):45477. | [53] | Huang G,Gao J,Wang X,et al.How can Graphene Reduce the Flammability of Polymer Nanocomposites?[J]. Mater Lett,2012,66(1):187-189. | [54] | Huang G,Chen S,Liang H,et al. Combination of Graphene and Montmorillonite Reduces the Flammability of Poly(vinyl alcohol) Nanocomposites[J]. Appl Clay Sci,2013,s80/81:433-437. | [55] | Huang G,Liang H,Wang Y,et al.Combination Effect of Melamine Polyphosphate and Graphene on Flame Retardant Properties of Poly(vinyl alcohol)[J]. Mater Chem Phys,2012,132(2/3):520-528. | [56] | Huang G,Yang J,Gao J,et al.Thin Films of Intumescent Flame Retardant-Polyacrylamide and Exfoliated Graphene Oxide Fabricated via Layer-by-Layer Assembly for Improving Flame Retardant Properties of Cotton Fabric[J]. Ind Eng Chem Res,2012,51(38):12355-12366. | [57] | Zuo L,Fan W,Zhang Y,et al.Graphene/Montmorillonite Hybrid Synergistically Reinforced Polyimide Composite Aerogels with Enhanced Flame-Retardant Performance[J]. Compos Sci Technol,2017,139:57-63. | [58] | Gedler G,Antunes M,Realinho V,et al.Thermal Stability of Polycarbonate-Graphene Nanocomposite Foams[J]. Polym Degrad Stabil,2012,97(8):1297-1304. | [59] | Kuila T,Khanra P,Mishra A,et al.Functionalized-Graphene/Ethylene Vinyl Acetate Co-Polymer Composites for Improved Mechanical and Thermal Properties[J]. Polym Test,2012,31(2):282-289. | [60] | Huang G,Chen S,Tang S,et al.A Novel Intumescent Flame Retardant-functionalized Graphene:Nanocomposite Synthesis, Characterization, and Flammability Properties[J]. Mater Chem Phys,2012,135(2/3):938-947. | [61] | Wang Z,Xu S,Wu L,et al.Flammability and Thermal Degradation of PMMA/Graphene Composites[J]. Adv Mater Res,2014,910:31-34. | [62] | Huang G,Chen S,Song P,et al. Combination effects of Graphene and Layered Double Hydroxides on Intumescent Flame-Retardant Poly(methyl methacrylate) Nanocomposites[J]. Appl Clay Sci,2014,88/89(3):78-85. | [63] | Wang X,Song L,Yang H,et al.Synergistic Effect of Graphene on Antidripping and Fire Resistance of Intumescent Flame Retardant Poly(butylene succinate) Composites[J]. Ind Eng Chem Res,2011,50(9):5376-5383. | [64] | Wang X,Hu Y,Song L,et al.Comparative Study on the Synergistic Effect of POSS and Graphene with Melamine Phosphate on the Flame Retardance of Poly(butylene succinate)[J]. Thermochim Acta,2012,543:156-164. | [65] | Wicklein B,Kocjan A,Salazar-Alvarez G,et al.Thermally Insulating and Fire-Retardant Lightweight Anisotropic Foams Based on Nanocellulose and Graphene Oxide[J]. Nat Nanotechnol,2015,10(3):277-283. | [66] | Nine M,Tran D,Tung T,et al.Graphene-Borate as an Efficient Fire Retardant for Cellulosic Materials with Multiple and Synergetic Modes of Action[J]. ACS Appl Mater Interfaces,2017,9(11):10160-10168. |
|