研究成果
2022年
当前位置:首页  研究成果  论文  2022年]

[1]CAO G, CHEN X, DENG B, et al. Color construction of polyimide fibers based on charge transfer complex regulation and swelling effect [J]. Applied Surface Science, 2022, 597. 

[2]DONG H, WANG Y-P, LI X-T, et al. Dry-spun Polyimide Fibers with Excellent Thermal Stability, Intrinsic Flame Retardancy and Ultralow Smoke Release [J]. Chinese Journal of Polymer Science, 2022, 40(11): 1422-31.  

[3]DONG H, ZHENG S, GUO T, et al. Preparation and properties of high heat-resistant polyimide fiber [J]. Journal of Textile Research, 2022, 43(2): 19-23,43. 

[4]FANG Y-T, GAN F, DONG J, et al. Preparation of High-performance Polyimide Fibers with Wholly Rigid Structures Containing Benzobisoxazole Moieties [J]. Chinese Journal of Polymer Science, 2022, 40(3): 280-9. 

[5]GU J-P, ZHANG K-Y, LI X-T, et al. Construction of Safety and Non-flammable Polyimide Separator Containing Carboxyl Groups for Advanced Fast Charing Lithium-ion Batteries [J]. Chinese Journal of Polymer Science, 2022, 40(4): 345-54. 

[6]LI M, CHEN X, LI X, et al. Ultralight aerogel textiles based on aramid nanofibers composites with excellent thermal insulation and electromagnetic shielding properties [J]. Composites Communications, 2022, 35. 

[7]LI M, CHEN X, LI X, et al. Controllable Strong and Ultralight Aramid Nanofiber-Based Aerogel Fibers for Thermal Insulation Applications [J]. Advanced Fiber Materials, 2022, 4(5): 1267-77. 

[8]WANG J, YUE X, LI X, et al. Lightweight and Elastic Silver Nanowire/PEDOT:PSS/Polyimide Aerogels for Piezoresistive Sensors [J]. Acs Applied Polymer Materials, 2022. 

[9]WANG Z, BA Z, LIU R, et al. Boosting lithium ions inserting onto aromatic ring by extending conjugation of triazine-based porous organic frameworks for lithium-ion batteries [J]. Materials Chemistry and Physics, 2022, 289. 

[10]WU D, ZHAO X, LI X, et al. Polyimide film containing sulfone groups with high dielectric properties [J]. Polymer, 2022, 256. 

[11]WU Z, DONG J, LI X, et al. Interlayer decoration of expanded graphite by polyimide resins for preparing highly thermally conductive composites with superior electromagnetic shielding performance [J]. Carbon, 2022, 198: 1-10. 

[12]XIAO X, XU X-C, LI X-T, et al. Preparation and Gas Separation Properties of Polyimide Membranes Containing Polyether Segments [J]. Acta Polymerica Sinica, 2022, 53(5): 505-13. 

[13]XU X, DONG J, LI X, et al. Synthesis of polyimides containing Troger's base and triphenylmethane moieties with a tunable fractional free volume for CO2 separation [J]. Polymer Chemistry, 2022, 13(39): 5545-56. 

[14]YANG C, LI X-T, DONG J, et al. Preparation of High Performance Polyimide Based on Metal Coordination Bond [J]. Acta Polymerica Sinica, 2022, 53(6): 663-72. 

[15]ZHENG S, DONG J, ZHOU X, et al. High-Strength and High-Modulus Polyimide Fibers with Excellent UV and Ozone Resistance [J]. Acs Applied Polymer Materials, 2022, 4(6): 4558-67. 

[16]ZHU Z, WANG Z, BA Z, et al. 3D MXene-holey graphene hydrogel for supercapacitor with superior energy storage [J]. Journal of Energy Storage, 2022, 47.

[17]ZUO H, CHEN Y, QIAN G, et al. Effect of simultaneously introduced bulky pendent group and amide unit on optical transparency and dimensional stability of polyimide film [J]. European Polymer Journal, 2022, 173. 

[18]ZUO H, QIAN G, LI H-B, et al. Reduced coefficient of linear thermal expansion for colorless and transparent polyimide by introducing rigid-rod amide units: synthesis and properties [J]. Polymer Chemistry, 2022, 13(20): 2999-3008.