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Facile Synthesis of Flexible Hollow Conductive Polyaniline Composite Fibers from Willow Catkins

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References

  • And, M. M., and K. I. Winey. 2006. Polymer nanocomposites containing carbon nanotubes. Macromolecules 39 (16):543–45. doi:10.1021/ma060733p.
  • Ciric-Marjanovic, G. 2013. Recent advances in PANI research: Polymerization mechanism, structural aspects, properties and applications. Synthetic Metals 177:1–47. doi:10.1016/j.synthmet.2013.06.004.
  • Giel, V., J. Kredatusova, M. Trchova, J. Brus, J. Žitka, and J. Peter. 2016. PANI/polybenzimidazole blends: Characterisation of its physico-chemical properties and gas separation behavior. European Polymer Journal 77:98–113. doi:10.1016/j.eurpolymj.2016.02.008.
  • Guo, Y. P., and D. A. Rockstraw. 2007. Activated carbons prepared from rice hull by one-step phosphoric acid activation. Microporous and Mesoporous Materials 100 (1):12–19. doi:10.1016/j.micromeso.2006.10.006.
  • Hao, J., W. W. Zhao, H. F. Zhang, D. Wang, Q. C. Yang, N. Tang, and X. C. Wang. 2018. Controlled synthesis of PANI nanostructures using phenol and hydroquinone as morphology-control agent. Polymer Bulletin 75 (6):2575–85. doi:10.1007/s00289-017-2159-z.
  • Hu, X. P., and Y. L. Hsieh. 2001. Effects of dehydration on the crystalline structure and strength of developing cotton fibers. Textile Research Journal 71 (3):231–39. doi:10.1177/004051750107100308.
  • Jiménez, P., W. K. Maser, P. Castell, and M. T. M. Santiago. 2009. Nanofibrilar polyaniline: Direct route to carbon nanotube water dispersions of high concentration. Macromolecular Rapid Communications 30 (6):418–22. doi:10.1002/marc.200800707.
  • Kaushik, A., M. Singh, and G. Verma. 2010. Green nanocomposites based on thermoplastic starch and steam exploded cellulose nanofibrils from wheat straw. Carbohydrate Polymers 82 (2):337–45. doi:10.1016/j.carbpol.2010.04.063.
  • Li, L. Y., H. F. Zhang, C. J. Liu, J. J. Yang, D. L. Sun, Y. L. Guo, and X. C. Wang. 2018. Preparation of flexible hollow PANI/Feixu composite fibers. Journal of Applied Polymer Science 135:46526–46526. doi:10.1002/app.46526.
  • Li, Y. J., G. L. Wang, T. Wei, Z. J. Fan, and P. Yan. 2016. Nitrogen and sulfur co-doped porous carbon nanosheets derived from willow catkin for supercapacitors. Nano Energy 19 (165–175). doi: 10.1016/j.nanoen.2015.10.038.
  • Nautiyal, A., and S. Parida. 2016. Comparison of PANI electrodeposition on carbon steel from oxalic acid and salicylate medium. Progress in Organic Coatings 94:28–33. doi:10.1016/j.porgcoat.2016.01.014.
  • Oueiny, C., S. Berlioz, and F. Perrin. 2014. Carbon nanotube–polyaniline composites. Progress in Polymer Science 39:707–48. doi:10.1016/j.progpolymsci.2013.08.009.
  • Summers, G. J., U. S. Waware, M. R. Maduwa, and C. A. Summers. 2015. Conducting PANI nanorods doped with aromatic carboxyl chain end functionalized polystyrene. Synthetic Metals 209:251–61. doi:10.1016/j.synthmet.2015.07.026.
  • Tsamba, A. J., W. Yang, and W. Blasiak. 2006. Pyrolysis characteristics and global kinetics of coconut and cashew nut shells. Fuel Processing Technology 87 (6):523–30. doi:10.1016/j.fuproc.2005.12.002.
  • Wang, K., Y. Song, R. Yan, N. Zhao, X. D. Tian, X. Li, Q. G. Guo, and Z. J. Liu. 2017. High capacitive performance of hollow activated carbon fibers derived from willow catkin. Applied Surface Science 394:569–77. doi:10.1016/j.apsusc.2016.10.161.
  • Wang, X. C., X. F. Feng, Y. Zhao, R. Z. Zhang, and D. L. Sun. 2007. Preparation of dendritic and network PANI/silica composite fibers. European Polymer Journal 43 (8):3679–82. doi:10.1016/j.eurpolymj.2007.05.039.
  • Wang, X. C., Y. Li, Y. Zhao, J. Liu, S. Tang, and W. Feng. 2010. Synthesis of PANI nanostructures with various morphologies from fibers to micromats to disks doped with salicylic acid. Synthetic Metals 160(17–18):2008–14. 2010.07.030. doi:10.1016/j.synthmet.
  • Wang, X. C., J. Liu, X. G. Huang, L. Men, M. J. Guo, and D. L. Sun. 2008. Controlled synthesis of linear polyaniline tubes and dendritic polyaniline fibers with stearic acid. Polymer Bulletin 60 (1):1–6. doi:10.1007/s00289-007-0828-z.
  • Xiong, S. X., Q. Wang, and H. S. Xia. 2004. Preparation of polyaniline nanotubes array based on anodic aluminum oxide template. Materials Research Bulletin 39 (10):1569–80. doi:10.1016/j.materresbull.2004.01.009.
  • Zhang, X., R. Chan-Yu-King, A. Jose, and S. K. Manohar. 2004. Nanofibers of polyaniline synthesized by interfacial polymerization. Synthetic Metals 145 (1):23–29. doi:10.1016/j.synthmet.2004.03.012.
  • Zhang, X. Y., H. S. Kolla, X. H. Wang, K. Raja, and S. K. Manohar. 2006. Fibrillar growth in polyaniline. Advanced Functional Materials 16 (9):1145–52. doi:10.1002/adfm.200500478.

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