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测试与分析                                     陆少杰 等·芳纶纳米纤维对石墨烯薄膜导电性能和力学性能的影响


                                                                  成功改善了石墨烯薄膜的力学性能,有望在超级电容
                                                                  器中得到广泛应用。


                                                                  参考文献 :
                                                                  [1]   Fan J, Shi Z, Zhang L, et al. Aramid nanofiber-function
                                                                      alized graphene nanosheets for polymer reinforcement [J].
                                                                      Nanoscale, 2012, 4(22):7 046-7 055.
                                                                  [2]   Vollrath F, Knight D P. Liquid crystalline spinning of spider
                                                                      silk [J]. Nature, 2001, 410(6828):541-548.
                                                                  [3]   Gong F, Li H,  Wang  W, et al. Recent  Advances in
                                                                      Gra p he n e - B a se d  Fr e e - St a n di n g Fi l m s f or  T he rm a l
                                                                      Management:Synthesis, Properties, and Applications [J].
                                                                      Coatings, 2018, 8(2):63.
                                                                  [4]   Xin G, Sun H, Hu  T, et al. Large-Area Freestanding
                                                                      Graphene Paper for Superior  Thermal Management [J].
                                                                      Advanced Materials, 2014, 26(26):4 521-4 526.
                                                                  [5]   Fan J, Shi Z,  Tian M, et al. Graphene–aramid nanofiber
                                                                      nanocomposite  paper  with  high  mechanical  and  electrical
                                                                      performance [J]. RCS Advances, 2013, 3(39):17 664-17 667.
                                                                  [6]   Stankovich S, Dikin D A, Piner R D, et al. Synthesis of
                                                                      graphene-based  nanosheets  via  chemical  reduction  of
                                                                      exfoliated graphite oxide [J]. Carbon, 2007, 45(7):1 558-1
                                                                      565.
                                                                  [7]   Ya ng M, Ca o K, Sui  L , e t  a l . Di spe rsi ons of  Ara m i d
                                                                      Nanofibers:A New Nanoscale Building Block [J]. Acs Nano,
                                                                      2011, 5(9):6 945-6 954.
                                                                  [8]   Lyu J,  Wang X, Liu L, et al. High Strength Conductive
                                                                      Composites with Plasmonic Nanoparticles  Aligned on
                                                                      Aramid Nanofibers [J]. Advanced Functional Materials,
                                                                      2016, 26(46):8 435-8 445.
                                                                  [9]   Shah S A, Kulhanek D, Sun  W, et al. Aramid nanofiber-
                                                                      reinforced three-dimensional graphene hydrogels for
                                                                      supercapacitor electrodes [J]. Journal of Colloid and
                                                                      Interface Science, 2020, (560):581-588.
                                                                  [10]  Li Y, Ren G, Zhang Z, et al. A strong and highly flexible
                                                                      aramid  nanofibers/PEDOT:PSS film for  all-solid-state
                                                                      supercapacitors with superior cycling stability  [J].  Journal
                                                                      of Materials Chemistry A, 2016, 4(44):17 324-17 332.
                                                                  [11]  Zhu  J,  Cao  W,  Yue  M,  et  al.Strong  and  Stiff  Aramid
                                                                      Nanofiber/Carbon Nanotube Nanocomposites [J]. ACS Nano,
                                                                      2015, 9(3):2 489-2 501.
                                                                  [12]  Marcano D C, Kosynkin D  V, Berlin J M, et al. Improved
                                                                      Synthesis of Graphene Oxide [J]. Acs Nano, 2010, 4(8):
                                                                      4 806-4 814.
                                                                  [13]  Compton O C, Dikin D A, Putz K  W, et al. Electrically
                                                                      Conductive "Alkylated" Graphene Paper via Chemical
                      图 2 RGO,ANFs 和 nA-RGO 薄膜的参数                     Reduction of Amine-Functionalized Graphene Oxide Paper
                                                                      [J]. Advanced Materials, 2010, 22(8):892-896.
                的电导率随着 ANFs 含量的增加而降低 ;力学性能随                       [14]  Park S, Lee K-S,  Bozoklu  G,  et  al.  Graphene  oxide  papers
                着 ANFs 含量的增加先增大后减小,当 ANFs 含量为                         modified by divalent ions-Enhancing mechanical properties
                                                                      via chemical cross-linking [J]. Acs Nano, 2008, 2(3):572-
                25% 时,拉伸强度最高为 184.5  MPa。ANFs 的引入
                                                                      578.




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