1、代表性论文【部分2025版中科院一区TOP期刊论文】 [1] J. Qu, G. Li, B. Huang, H. Zhang, Y. Wang, R. Lian, L. Liu, L. Yang, B. Li, X. Chen, C. Jiao, Hierarchical MXene@PBA@IL nanohybrids towards high-efficiently enhance fire safety of epoxy resin, Chemical Engineering Journal, 2025, 510: 161619. [IF: 13.4] [2] G. Li, J. Qu, B. Huang, H. Zhao, W. Sun, H. Zhang, L. Liu, X. Chen, C. Jiao, Cobalt/copper coordinated organic-inorganic hybrid fibrous phosphorus-nitrogen flame retardant: Simultaneously improving fire safety, deicing and mechanical properties for thermoplastic polyurethane, Composites Part B: Engineering, 2025, 297: 112292. [IF: 12.7] [3] G. Li, H. Zhang, J. Qu, B. Huang, H. Zhao, S. Wang, X. Chen, C. Jiao, Multiple synergistic effects of copper salicylaldehyde-modified P-N inorganic-organic hybrid in enhancing flame retardancy, smoke suppression, and anti-dripping properties of TPU, Polymer Degradation and Stability, 2025, 232: 111136. [IF: 6.3] [4] Z. Zhao, J. Qu, Y. Geng, R. Li, J. Qiu, M. Liu, X. Chen, S. Li, C. Jiao, Facile preparation of microcapsuled P-N@MXene flame retardant using layer-by-layer assembly strategy towards enhanced fire safety of epoxy resin, Polymer Degradation and Stability, 2025, 234: 111219. [IF: 6.3] [5] Y. Geng, J. Piao, X. Liu, X. Chen, C. Jiao, ZIF-67-derived CuCo-layered double hydroxide/ammonium polyphosphate hybrid for highly efficient flame retardant epoxy resin via synergistic catalytic carbonization, Construction and Building Materials, 2024, 453: 139102.[IF: 7.4] [6] Y. Geng, R. Li, R. Song, Z. Zhao, X. Liu, L. Liu, L.Yang, B. Li, X. Chen, C. Jiao, A new strategy for constructing ZIF-67@PBA core-shell 3D cross-heterostructures for improving fire safety of TPU at ultra-low addition amount, Polymer Degradation and Stability, 2024, 229:111004.[IF: 6.3] [7] Y. Geng, Z. Zhao, R. Li, X. Liu,G. Li, M. Wan, L. Liu, X. Chen, C. Jiao, Facile-controllable synthesis of 3D cross-shaped ZIF-67 to achieve highly efficient flame retardancy and smoke suppre for TPU composites, Polymer Degradation and Stability, 2024, 227: 110845.[IF: 6.3] [8] H. Guan, R. Lian, R. Li, J. Zhu, Z. Zhao, L. Liu, X. Chen, C. Jiao, S. Kuang, A low-temperature carbonization strategy for efficient viscous crude oil spill disposal without hydrophobic coating: CoFe-PBA-catalyzed carbonization of superhydrophobic flame retardant melamine sponge, Advanced Functional Materials, 2024, 34 (14) :2313224. [IF:18.5] [9] R. Lian, Q. Gao, Z. Zhao, M. Ou, X. Liu, L. Liu, X. Chen, C. Jiao, Hierarchical MXene@PBA nanohybrids towards high-efficiency flame retardancy and smoke suppre of robust yet tough polymer nanocomposites at ultra-low additions, Composites Part B-Engineering, 2023 , 267:111074. [IF: 12.7] [10] Y. Wang, J. Ren, M. Ou, J. Cui, H. Guan, R. Lian, C. Jiao, X. Chen, Flame-retardant and antibacterial properties of cotton fabrics treated by epichlorohydrin-modified aramid nanofibers, ionic liquid, and Cu ion, Polymer Degradation and Stability, 2023, 212: 110347. [IF: 6.3] [11] J. Ren, Y. Wang, J. Piao, M. Ou, R. Lian, J. Cui, H. Guan, L. Liu, C. Jiao, X. Chen, Facile construction of organic-inorganic hybrid flame-retardant system based on fully biomass: Improving the fire safety and mechanical property of epoxy resin, Chemical Engineering Journal, 2023, 460: 141775. [IF: 13.4] [12] J. Piao, M. Lu, J. Ren, Y. Wang, T. Feng, Y. Wang, C. Jiao, X. Chen, S. Kuang, MOF-derived LDH modified flame-retardant polyurethane sponge for high-performance oil-water separation: Interface engineering design based on bioinspiration, Journal of Hazardous Materials, 2023, 444: 130398. [IF: 12.2] [13] R. Lian, M. Ou, H. Guan, J. Cui, Z. Zhao, L. Liu, X. Chen, C. Jiao, Cu(Ⅱ) and Co(Ⅱ) complexes decorated ammonium polyphosphate as co-curing agents on improving fire safety and mechanical properties of epoxy-based building coatings, Construction and Building Materials, 2023, 389: 131786. [IF: 7.4] [14] R. Lian, M. Ou, H. Guan, J. Cui, J. Piao, T. Feng, J. Ren, Y. Wang, Y. Wang, L. Liu, X. Chen, C. Jiao, Facile fabrication of multifunctional energy-saving building materials with excellent thermal insulation, robust mechanical property and ultrahigh flame retardancy, Energy, 2023, 277: 127773. [IF: 9] [15] R. Lian, Y. Jiang, H. Guan, J. Cui, Q. Gao, L. Liu, X. Chen, C. Jiao, Biomimetic construction of hierarchical MXene@PDA@CoFeOx nanohybrids towards efficient fire-safe epoxy nanocomposites with enhanced thermal conductivity and mechanical properties, Polymer Degradation and Stability, 2023, 215: 110444. [IF: 6.3] [16] H. Guan, R. Li, R. Lian, J. Cui, M. Ou, L. Liu, X. Chen, C. Jiao, S. Kuang, A biomimetic design for efficient petrochemical spill disposal: CoFe-PBA modified superhydrophobic melamine sponge with mechanical/chemical durability and low fire risk, Journal of Hazardous Materials, 2023, 459: 132041. [IF: 12.2] [17] T. Feng, Y. Wang, H. Dong, J. Piao, Y. Wang, J. Ren, W. Chen, W. Liu, X. Chen, C. Jiao, Ionic liquid modified boron nitride nanosheets for interface engineering of epoxy resin nanocomposites: Improving thermal stability, flame retardancy, and smoke suppression, Polymer Degradation and Stability, 2022, 199: 109899.[IF: 6.3] [18] H. Dong, Y. Wang, T. Feng, J. Piao, J. Ren, Y. Wang, W. Liu, W. Chen, S. Li, X. Chen, C. Jiao, Phytic acid doped polyaniline-coupled g-C3N4 nanosheets for synergizing with APP promoting fire safety and waterproof performance of epoxy composites, Polymer Degradation and Stability, 2022,198: 109879.[IF: 6.3] [19] C. Jiao, H. Wang, S. Li, X. Chen, Fire hazard reduction of hollow glass microspheres in thermoplastic polyurethane composites, Journal of Hazardous Materials, 2017, 332: 176-184. [20] X. Chen, W. Wang, S. Li, C. Jiao, Fire safety improvement of para-aramid fiber in thermoplastic polyurethane elastomer, Journal of Hazardous Materials, 2017, 324: 789-796. [IF: 12.2] [21] X. Chen, W. Wang, C. Jiao, A recycled environmental friendly flame retardant by modifying para-aramid fiber with phosphorus acid for thermoplastic polyurethane elastomer, Journal of Hazardous Materials, 2017, 331: 257-264. [IF: 12.2] [22] X. Chen, C. Ma, C. Jiao, Enhancement of flame-retardant performance of thermoplastic polyurethane with the incorporation of aluminum hypophosphite and iron-graphene, Polymer Degradation and Stability, 2016, 129: 275-285.[IF: 6.3] [23] X. Chen, Y. Jiang, C. Jiao, Smoke suppression properties of ferrite yellow on flame retardant thermoplastic polyurethane based on ammonium polyphosphate, Journal of Hazardous Materials, 2014, 266: 114-121. [IF: 12.2] 2、授权国家发明专利 [1] 一种阻燃剂及其制备方法和防火涂料及其制备方法,专利号:ZL202211307661; [2] 植酸掺杂氮化碳-聚苯胺纳米复合材料及其制备方法以及膨胀型防火涂料及其制备方法,专利号:ZL202210102758; [3] 氮化碳-聚苯胺纳米复合材料及其制备方法以及氮化碳-聚苯胺膨胀型防火涂料及其制备方法,专利号:ZL202011634683; [4] 一种阻燃剂及在热塑性聚氨酯弹性体阻燃中的应用,申请号:ZL201910441360; [5] 红外光谱仪固液温控加热池及方法,申请号:ZL201910070641; [6] 含腈基的化合物作为阻燃剂在阻燃热塑性塑料中的应用,专利号:ZL201610528837; [7]一种空心玻璃微珠的表面改性方法及其阻燃应用,申请号:ZL201610497423; [8] 一种热塑性塑料阻燃剂、阻燃热塑性塑料及制备方法,申请号:ZL201610496353; [9] 铝酸酯类物质作为阻燃剂在阻燃热塑性塑料中的应用,专利号:ZL201511022488; [10] 钛酸酯类物质作为阻燃剂在阻燃热塑性塑料中的应用,专利号:ZL201511023142; [11] 硅烷偶联剂作为阻燃剂在阻燃热塑性塑料中的应用,申请号:ZL201511024303; [12] 一种阻燃热塑性聚氨酯弹性体及其制备方法,专利号:ZL201510991875; [13] 一种吸附材料、制备方法及吸附水中弱酸性艳蓝G的方法,专利号:ZL201310367515; [14] 复合膨胀型阻燃剂及其在阻燃环氧树脂复合材料制备中的应用,专利号:ZL201310367605; [15] 复合阻燃剂及其在阻燃热塑性聚氨酯弹性体材料制备中的应用,专利号:ZL201310367565; [16] 一种阻燃热塑性聚氨酯弹性体及其制备方法,专利号:ZL201410324281; [17] 复合无机阻燃剂及其在阻燃EVA复合材料中的应用,专利号:ZL201310239869; [18] 复合膨胀型阻燃剂及其在阻燃聚丙烯和聚氨酯中的应用,专利号:ZL201310239417. |