A P/N/S-containing high-efficiency flame retardant endowing epoxy resin with excellent flame retardance, mechanical properties and heat resistance
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Huiru Ma | H. Duan | S. Ji | Jianfang Cao | Jiahao Zou | Yongsheng Chen
[1] Rongjie Yang,et al. Fabrication of eco-friendly and multifunctional sodium-containing polyhedral oligomeric silsesquioxane and its flame retardancy on epoxy resin , 2020 .
[2] Lei Song,et al. Renewable vanillin-based flame retardant toughening agent with ultra-low phosphorus loading for the fabrication of high-performance epoxy thermoset , 2020, Composites Part B: Engineering.
[3] Darpandeep Aulakh,et al. 1-Dopyl-1,2-(4-hydroxyphenyl)ethene: A flame retardant hardner for epoxy resin , 2020 .
[4] Hao Wang,et al. A bio-based ionic complex with different oxidation states of phosphorus for reducing flammability and smoke release of epoxy resins , 2020 .
[5] Xiaorui Han,et al. Effective Biobased Phosphorus Flame Retardants from Starch-Derived bis-2,5-(Hydroxymethyl)Furan , 2020, Molecules.
[6] Chao Duan,et al. Sulfathiazole derivative with phosphaphenanthrene group: Synthesis, characterization and its high flame-retardant activity on epoxy resin , 2020 .
[7] Yefa Hu,et al. Aminobenzothiazole-substituted cyclotriphosphazene derivative as reactive flame retardant for epoxy resin , 2020 .
[8] Tong Zhan,et al. Nitrogen/sulfur-containing DOPO based oligomer for highly efficient flame-retardant epoxy resin , 2020 .
[9] Hong Zhou,et al. A novel nitrogen, phosphorus, and boron ionic pair compound toward fire safety and mechanical enhancement effect for epoxy resin , 2020 .
[10] Yefa Hu,et al. A liquid phosphorus-containing imidazole derivative as flame-retardant curing agent for epoxy resin with enhanced thermal latency, mechanical, and flame-retardant performances. , 2019, Journal of hazardous materials.
[11] Yang Chen,et al. High residue bio-based structural–functional integration epoxy and intrinsic flame retardant mechanism study , 2019, RSC advances.
[12] Yajun Chen,et al. Improving the fracture toughness and flame retardant properties of epoxy thermosets by phosphaphenanthrene/siloxane cluster-like molecules with multiple reactive groups , 2019 .
[13] Yefa Hu,et al. Benzimidazolyl-substituted cyclotriphosphazene derivative as latent flame-retardant curing agent for one-component epoxy resin system with excellent comprehensive performance , 2019, Composites Part B: Engineering.
[14] Shuang Yang,et al. Facile construction of one-component intrinsic flame-retardant epoxy resin system with fast curing ability using imidazole-blocked bismaleimide , 2019, Composites Part B: Engineering.
[15] Pingan Song,et al. A novel strategy for enhancing the flame resistance, dynamic mechanical and the thermal degradation properties of epoxy nanocomposites , 2019, Materials Research Express.
[16] Huiru Ma,et al. A novel phosphorus/nitrogen-containing polycarboxylic acid endowing epoxy resin with excellent flame retardance and mechanical properties , 2019, Chemical Engineering Journal.
[17] Yajun Chen,et al. High-efficiency flame retardant behavior of bi-DOPO compound with hydroxyl group on epoxy resin , 2019, Polymer Degradation and Stability.
[18] Rui Chen,et al. A novel flame retardant derived from DOPO and piperazine and its application in epoxy resin: Flame retardance, thermal stability and pyrolysis behavior , 2019, Polymer Degradation and Stability.
[19] V. Placet,et al. New Reactive Isoeugenol Based Phosphate Flame Retardant: Toward Green Epoxy Resins , 2019, ACS Sustainable Chemistry & Engineering.
[20] Zhuohong Yang,et al. Synthesis of a multifunctional bisphosphate and its flame retardant application in epoxy resin , 2019, Polymer Degradation and Stability.
[21] H. Ishida,et al. Resveratrol-based tri-functional benzoxazines: Synthesis, characterization, polymerization, and thermal and flame retardant properties , 2019, European Polymer Journal.
[22] Yuanfei Ai,et al. Organophosphorus heteroaromatic compound towards mechanically reinforced and low-flammability epoxy resin , 2019, Composites Part B: Engineering.
[23] Yefa Hu,et al. A DOPO based reactive flame retardant constructed by multiple heteroaromatic groups and its application on epoxy resin: curing behavior, thermal degradation and flame retardancy , 2019, Polymer Degradation and Stability.
[24] Yumeng Hu,et al. Economical and facile synthesis of a highly efficient flame retardant for simultaneous improvement of fire retardancy, smoke suppression and moisture resistance of epoxy resins , 2019, Composites Part B: Engineering.
[25] Haimin Zhao,et al. Single component phosphamide-based intumescent flame retardant with potential reactivity towards low flammability and smoke epoxy resins. , 2019, Journal of hazardous materials.
[26] Hao Wang,et al. Improved flame resistance and thermo-mechanical properties of epoxy resin nanocomposites from functionalized graphene oxide via self-assembly in water , 2019, Composites Part B: Engineering.
[27] Lei Song,et al. A facile approach to prepare phosphorus and nitrogen containing macromolecular covalent organic nanosheets for enhancing flame retardancy and mechanical property of epoxy resin , 2019, Composites Part B: Engineering.
[28] Mingfeng Chen,et al. Simultaneously Improving the Thermal, Flame‐Retardant and Mechanical Properties of Epoxy Resins Modified by a Novel Multi‐Element Synergistic Flame Retardant , 2019, Macromolecular Materials and Engineering.
[29] B. Howell,et al. 2-Dopyl-1,4-di(2-dopylpropanoyl)benzene, an effective phosphorus flame retardant , 2019, Polymer Degradation and Stability.
[30] Yunhong Jiao,et al. Synthesis of a novel phosphazene-based flame retardant with active amine groups and its application in reducing the fire hazard of Epoxy Resin. , 2019, Journal of hazardous materials.
[31] Jaehyun Cho,et al. Flame Retardant Epoxy Derived from Tannic Acid as Biobased Hardener , 2019, ACS Sustainable Chemistry & Engineering.
[32] Shuang Yang,et al. Synthesis of a DOPO-containing imidazole curing agent and its application in reactive flame retarded epoxy resin , 2019, Polymer Degradation and Stability.
[33] Hao Wang,et al. A facile way to prepare phosphorus-nitrogen-functionalized graphene oxide for enhancing the flame retardancy of epoxy resin , 2018, Composites Communications.
[34] M. Döring,et al. Novel organophosphorus flame retardants and their synergistic application in novolac epoxy resin , 2018, Polymer Degradation and Stability.
[35] L. Dai,et al. Synthesis and application of aminophenyl-s-triazine derivatives as potential flame retardants in the modification of epoxy resins , 2018, RSC advances.
[36] Shan-You Huang,et al. Performance comparison of flame retardant epoxy resins modified by DPO–PHE and DOPO–PHE , 2018, Polymer Degradation and Stability.
[37] L. Dai,et al. A high synergistic P/N/Si-containing additive with dandelion-shaped structure deriving from self-assembly for enhancing thermal and flame retardant property of epoxy resins , 2018, Reactive and Functional Polymers.
[38] Yuan Hu,et al. Self-assembled supermolecular aggregate supported on boron nitride nanoplatelets for flame retardant and friction application , 2018, Chemical Engineering Journal.
[39] Yuan Hu,et al. Facile synthesis of a novel hyperbranched poly(urethane-phosphine oxide) as an effective modifier for epoxy resin , 2018, Polymer Degradation and Stability.
[40] C. Deng,et al. A novel multi-functional polymeric curing agent: Synthesis, characterization, and its epoxy resin with simultaneous excellent flame retardance and transparency , 2018, Chemical Engineering Journal.
[41] De‐yi Wang,et al. Covalent assembly of MCM-41 nanospheres on graphene oxide for improving fire retardancy and mechanical property of epoxy resin , 2018 .
[42] Xiu-li Wang,et al. New application for aromatic Schiff base: High efficient flame-retardant and anti-dripping action for polyesters , 2018 .
[43] Yuanfei Ai,et al. Flame-retarding epoxy resin with an efficient P/N/S-containing flame retardant: Preparation, thermal stability, and flame retardance , 2018 .
[44] Lijun Qian,et al. Pyrolysis and flame retardant behavior of a novel compound with multiple phosphaphenanthrene groups in epoxy thermosets , 2017 .
[45] Rong‐Kun Jian,et al. Effect of a novel P/N/S-containing reactive flame retardant on curing behavior, thermal and flame-retardant properties of epoxy resin , 2017 .
[46] Qian Wu,et al. A novel and facile strategy for highly flame retardant polymer foam composite materials: Transforming silicone resin coating into silica self-extinguishing layer. , 2017, Journal of hazardous materials.
[47] Rong‐Kun Jian,et al. Synthesis of a Novel P/N/S-Containing Flame Retardant and Its Application in Epoxy Resin: Thermal Property, Flame Retardance, and Pyrolysis Behavior , 2016 .
[48] Yuan Hu,et al. Thermal exfoliation of hexagonal boron nitride for effective enhancements on thermal stability, flame retardancy and smoke suppression of epoxy resin nanocomposites via sol–gel process , 2016 .
[49] L. Dai,et al. Modification of epoxy resin through the self-assembly of a surfactant-like multi-element flame retardant , 2016 .
[50] Wei Zhao,et al. Synthesis of a phosphorus and sulfur‐containing aromatic diamine curing agent and its application in flame retarded epoxy resins , 2015 .
[51] Yongqian Shi,et al. Enhanced thermal and flame retardant properties of flame-retardant-wrapped graphene/epoxy resin nanocomposites , 2015 .
[52] Adina Coroabă,et al. A straightforward, eco-friendly and cost-effective approach towards flame retardant epoxy resins , 2014 .
[53] H. Seifert,et al. The effect of a curing agent on the thermal degradation of fire retardant brominated epoxy resins , 2004 .