[1] QIU G D, WANG B, HU Y Q, et al. A method for electrodepositing Aramid Ⅲ nanofibers on copper electrodes [J]. Materi Lett, 2023, 340: 134137. [2] 吴剑宇,全皓月,董磊,等.芳纶浆粕对氯丁橡胶耐烧蚀性能影响研究[J].内蒙古工业大学学报(自然科学版), 2025, 44(3): 235-243. DOI:10.13785/j.cnki.nmggydxxbzrkxb.2025.03.006. [3] LI J Y, HUANG J Z, HUA L, et al. Poly(vinyl alcohol)assisted regulation of aramid nanofibers aerogel structure for thermal insulation and adsorption [J]. Microporous Mesoporous Mater, 2022, 339: 111997.DOI:10.1016/j.micromeso.2022.111997. [4] MENG Y L, XUE J Y, HUANG W Z, et al. Aramid nanofibers/polyimide aerogel with multi-dimensional structure for noise reduction and thermal insulation [J]. Compos Sci Technol, 2025, 266: 111181.DOI:10.1016/j.compscitech.2025.111181. [5] GAO Z S, LI L F, LI F C, et al. Versatile GO/ANFs aerogel for highly efficient solar-powered water purification in wide environments [J]. Langmuir, 2024, 40(24): 12504-12511.DOI:10.1021/acs.langmuir.4c00929. [6] TANG W, FU S R, LUO N, et al. Para-aramid nanofiber membranes for high-performance and multifunctional materials [J]. ACS Nano, 2022, 5(1): 747-758.DOI:10.1021/acsanm.1c03488. [7] YANG B, WANG L, ZHANG M, et al. Timesaving high-efficiency approaches to fabricate aramid nanofibers [J]. ACS Nano, 2019, 13(7): 7886-7897.DOI:10.1021/acsnano.9b02258. [8] ZHOU G D, WANG W T, PENG M. Functionalized aramid nanofibers prepared by polymerization induced self-assembly for simultaneously reinforcing and toughening of epoxy and carbon fiber/epoxy multiscale composite [J]. Compos Sci Technol, 2018, 168: 312-319.DOI:10.1016/j.compscitech.2018.10.013. [9] SHI Y F, QIU T, TUO X L. The bottom-up synthesis for aramid nanofibers: The influence of copolymerization [J]. J Appl Polym Sci, 2020, 137(48): e49589. [10] XIE C J, HE L Y, SHI Y F, et al. From monomers to a lasagna-like aerogel monolith: An assembling strategy for aramid nanofibers [J]. ACS Nano, 2019, 13(7): 7811-7824.DOI:10.1021/acsnano.9b01955. [11] NASSER J, LIN J J, STEINKE K, et al. Enhanced interfacial strength of aramid fiber reinforced composites through adsorbed aramid nanofiber coatings [J]. Compos Sci Technol, 2019, 174: 125-133.DOI:10.1016/j.compscitech.2019.02.025. [12] ZHANG P, ZHU L B, SONG J Y, et al. Improvement of interfacial adhesion of aramid fiber/polycarbonate composites by surface modification with graphene oxide modified sizing agents [J]. Polym Compos, 2024, 45(17): 15901-15914.DOI:10.1002/pc.28878. [13] MISHRA N, MADHAD H, VASAVA D. Progress in the chemistry of functional aramids properties [J]. J Heterocycl Chem, 2021, 58(10): 1887-1913.DOI:10.1002/jhet.4336. [14] ZHANG H C, ZHU X Y, TAI Y P, et al. Recent advances in nanofiber-based flexible transparent electrodes [J]. Int J Extreme Manuf, 2023, 5(3): 032005. [15] MARCHILDON K. Polyamides-still strong after seventy years [J]. Macromol React Eng, 2011, 5(1): 22-54.DOI:10.1002/mren.201000017. [16] LYU J, LIU L H, ZHAO X, et al. Facile fabrication of multifunctional aramid nanofiber films by spin coating [J]. J Mater Eng Perform, 2016, 25(11): 4757-4763.DOI:10.1007/s11665-016-2350-7. [17] ZHANG Z, WANG X Y, XU C H, et al. Functional modification of meta-aramid: A review [J]. Mini Rev Org Chem, 2024, 21(4): 436-444.DOI:10.2174/1570193x20666230302114735. [18] CHU Y Y, ZHANG Z G, ZHAO X, et al. Study on anti-stab resistance of aramid fabrics treated by sol-gel technology [J]. J Sol Gel Sci Technol, 2024, 111(1): 119-131.DOI:10.1007/s10971-024-06344-6. [19] CHEN Z Y, YU C Y, ZHONG W B. Preparation of mechanically strong aramid nanofiber gel film with surprising entanglements and orientation structure through aprotic donor solvent exchange [J]. Materials, 2025, 18(5): 1142. [20] CHUNG J, KWAK S Y. Solvent-assisted heat treatment for enhanced chemical stability and mechanical strength of meta-aramid nanofibers [J]. Eur Polym J, 2018, 107: 46-53. [21] WEI Y, CHEN X, DAI Z, et al. Two-step re-protonation strategy to fabricate aramid nanofiber sheet(ANFS)based high performance composite film [J]. Compos Sci Technol, 2024, 248: 110480.DOI:10.1016/j.compscitech.2024.110480. [22] ZHANG Y, ZHANG Y Z, QU R J, et al. Ag-coordinated self-assembly of aramid nanofiber-silver nanoparticle composite beads for selective mercury removal [J]. Sep Purif Technol, 2022, 282: 120147.DOI:10.1016/j.seppur.2021.120147. [23] LIU J W, ZHU L, WANG J N, et al. Phosphorus flame retardant modified aramid nanofiber separator for advanced safety lithium-sulfur batteries [J]. J Energy Storage, 2024, 92: 112030.DOI:10.2139/ssrn.4711669. [24] GAO Y F, WU S H, LI C C, et al. Hydrogen-bond- and shear-field-induced self-assembly for the efficient preparation of polybenzoxazole nanofibers with excellent mechanical properties and heat resistance [J]. Macromolecules, 2022, 55(21): 9420-9430.DOI:10.1021/acs.macromol.2c01482. [25] ZHANG H, ZHANG M Y, LI J B, et al. Aramid nanofiber-based functional composite materials: Preparations, applications and perspectives [J]. Compos Part B Eng, 2024, 271: 111151.DOI:10.1016/j.compositesb.2023.111151. ( |