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Research Article

Porous fibres with encapsulated functional materials and tunable release

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Pages 383-394 | Received 09 Feb 2017, Accepted 08 Jun 2017, Published online: 28 Jun 2017

References

  • Bodmeier R, Mcginity JW. Polylactic acid microspheres containing quinidine base and quinidine sulfate prepared by the solvent evaporation technique. 2. Some process parameters influencing the preparation and properties of microspheres. J Microencapsul, 1987;4:289–97.
  • Bognitzki M, Czado W, Frese T, Schaper A, Hellwig M, Steinhart M, Greiner A, Wendorff JH. Nanostructured fibres via electrospinning. Adv Mat, 2001a;13:70.
  • Bognitzki M, Frese T, Steinhart M, Greiner A, Wendorff JH, Schaper A, Hellwig M. Preparation of fibres with nanoscaled morphologies: Electrospinning of polymer blends. Polym Eng Sci, 2001b;41:982–9.
  • Cahn JW. 1967 Institute of Metals Lecture Spinodal Decomposition. Trans Metallurgical Soc AIME, 1968;242:166.
  • Casper CL, Stephens JS, Tassi NG, Chase DB, Rabolt JF. Controlling surface morphology of electrospun polystyrene fibres: Effect of humidity and molecular weight in the electrospinning process. Macromolecules, 2004;37:573–8.
  • Casper CL, Yamaguchi N, Kiick KL, Rabolt JF. Functionalizing electrospun fibres with biologically relevant macromolecules. Biomacromolecules, 2005;6:1998–2007.
  • Chew SY, Wen J, Yim EK, Leong KW. Sustained release of proteins from electrospun biodegradable fibres. Biomacromolecules, 2005;6:2017–24.
  • Coyle S, Wu YZ, Lau KT, De Rossi D, Wallace G, Diamond D. Smart nanotextiles: A review of materials and applications. Mrs Bull, 2007;32:434–42.
  • Dayal P, Liu J, Kumar S, Kyu T. Experimental and theoretical investigations of porous structure formation in electrospun fibres. Macromolecules, 2007;40:7689–94.
  • Doan TQ, Leslie LS, Kim SY, Bhargava R, White SR, Sottos NR. Characterization of core-shell microstructure and self-healing performance of electrospun fibre coatings. Polymer, 2016;107:263–72.
  • Fashandi H, Ghomi A. Interplay of phase separation and physical gelation in morphology evolution within nanoporous fibres electrospun at high humidity atmosphere. Ind Eng Chem Res, 2015;54:240–53.
  • Fashandi H, Karimi M. Pore formation in polystyrene fibre by superimposing temperature and relative humidity of electrospinning atmosphere. Polymer, 2012;53:5832–49.
  • Fashandi H, Karimi M. Comparative studies on the solvent quality and atmosphere humidity for electrospinning of nanoporous polyetherimide fibres. Ind Eng Chem Res, 2014a;53:235–45.
  • Fashandi H, Karimi M. Evidence for the impression of phase behavior of nonsolvent/solvent/polymer ternary system on morphology of polyethersulfone electrospun nanofibres. Fibres Polym, 2014b;15:1375–86.
  • Feng J, Hontanon E, Blanes M, Meyer J, Guo X, Santos L, Paltrinieri L, Ramlawi N, Smet LC, Nirschl H, et al. Scalable and environmentally benign process for smart textile nanofinishing. ACS Appl Mater Interfaces, 2016;8:14756–65.
  • He FA, Sarkar M, Lau S, Fan JT, Chan LH. Preparation and characterization of porous poly(vinylidene fluoride-trifluoroethylene) copolymer membranes via electrospinning and further hot pressing. Polymer Testing, 2011;30:436–41.
  • Hu X, Liu S, Zhou G, Huang Y, Xie Z, Jing X. Electrospinning of polymeric nanofibers for drug delivery applications. J Control Release, 2014;185:12–21.
  • Ignatova M, Rashkov I, Manolova N. Drug-loaded electrospun materials in wound-dressing applications and in local cancer treatment. Expert Opin Drug Deliv, 2013;10:469–83.
  • Jeevani T. Nanotextiles-a broader perspective. J Nanomed Nanotechnol, 2012;2:124. doi:10.4172/2157-7439.1000124
  • Jeon JW, Zhang LB, Lutkenhaus JL, Laskar DD, Lemmon JP, Choi D, Nandasiri MI, Hashmi A, Xu J, Motkuri RK, et al. Controlling porosity in lignin-derived nanoporous carbon for supercapacitor applications. Chemsuschem, 2015;8:428–32.
  • Ji L, Lin Z, Medford AJ, Zhang X. Porous carbon nanofibres from electrospun polyacrylonitrile/SiO2 composites as an energy storage material. Carbon, 2009a;47:3346–54.
  • Ji LW, Medford AJ, Zhang XW. Fabrication of carbon fibres with nanoporous morphologies from electrospun polyacrylonitrile/poly(l-lactide) blends. J Polym Sci Part B-Polym Phys, 2009b;47:493–503.
  • Jiang H, Hu Y, Li Y, Zhao P, Zhu K, Chen W. A facile technique to prepare biodegradable coaxial electrospun nanofibres for controlled release of bioactive agents. J Control Release, 2005;108:237–43.
  • Jud K, Kausch HH, Williams JG. Fracture-mechanics studies of crack healing and welding of polymers. J Mat Sci, 1981;16:204–10.
  • Kim C, Jeong YI, Ngoc BT, Yang KS, Kojima M, Kim YA, Endo M, Lee JW. Synthesis and characterization of porous carbon nanofibres with hollow cores through the thermal treatment of electrospun copolymeric nanofibre webs. Small, 2007;3:91–5.
  • Lee S, Lee K, Moon GD, Won YS, Yoon YJ, Park SS, Kim YR, Jeong U. Preparation of macroporous carbon nanofibres with macroscopic openings in the surfaces and their applications. Nanotechnology, 2009;20:445702.
  • Li L, Jiang Z, Li MM, Li RS, Fang T. Hierarchically structured PMMA fibres fabricated by electrospinning. RSC Adv, 2014;4:52973–85.
  • Liu H, Cao C-Y, Wei F-F, Jiang Y, Sun Y-B, Huang P-P, Song W-G. Fabrication of macroporous/mesoporous carbon nanofibre using CaCO3nanoparticles as dual purpose template and its application as catalyst support. J Phys Chem C, 2013;117:21426–32.
  • Ma GP, Liu Y, Peng C, Fang DW, He BJ, Nie J. Paclitaxel loaded electrospun porous nanofibres as mat potential application for chemotherapy against prostate cancer. Carbohydr Polym, 2011;86:505–12.
  • Megelski S, Stephens JS, Chase DB, Rabolt JF. Micro- and nanostructured surface morphology on electrospun polymer fibres. Macromolecules, 2002;35:8456–66.
  • Mitchell TJ, Keller MW. Coaxial electrospun encapsulation of epoxy for use in self-healing materials. Polym Int, 2013;62:860–6.
  • Mondal S. Phase change materials for smart textiles – An overview. Appl Thermal Eng, 2008;28:1536–50.
  • Moon S, Choi J, Farris RJ. Highly porous polyacrylonitrile/polystyrene nanofibres by electrospinning. Fibres Polym, 2008;9:276–80.
  • Pai C-L, Boyce MC, Rutledge GC. Morphology of porous and wrinkled fibres of polystyrene electrospun from dimethylformamide. Macromolecules, 2009;42:2102–14.
  • Park JH, Braun PV. Coaxial electrospinning of self-healing coatings. Adv. Mater. Weinheim, 2010;22:496.
  • Sun Z, Fan C, Tang X, Zhao J, Song Y, Shao Z, Xu L. Characterization and antibacterial properties of porous fibres containing silver ions. Appl Surf Sci, 2016;387:828–38.
  • Sun ZC, Zussman E, Yarin AL, Wendorff JH, Greiner A. Compound core-shell polymer nanofibres by co-electrospinning. Adv Mat, 2003;15:1929.
  • Sy JC, Klemm AS, Shastri VP. Emulsion as a means of controlling electrospinning of polymers. Adv Mat, 2009;21:1814.
  • Toncheva A, Paneva D, Maximova V, Manolova N, Rashkov I. Antibacterial fluoroquinolone antibiotic-containing fibrous materials from poly(L-lactide-co-d,l-lactide) prepared by electrospinning. Eur J Pharm Sci, 2012;47:642–51.
  • Wang LF, Pai CL, Boyce MC, Rutledge GC. Wrinkled surface topographies of electrospun polymer fibres. Appl Phys Lett, 2009;94:151916.
  • Washburn EW. The dynamics of capillary flow. Phys Rev, 1921;17:273–83.
  • White SR, Sottos NR, Geubelle PH, Moore JS, Kessler MR, Sriram SR, Brown EN, Viswanathan S. Autonomic healing of polymer composites. Nature, 2001;409:794–7.
  • Wu X-F, Rahman A, Zhou Z, Pelot DD, Sinha-Ray S, Chen B, Payne S, Yarin AL. Electrospinning core-shell nanofibres for interfacial toughening and self-healing of carbon-fibre/epoxy composites. J Appl Polym Sci, 2013;129:1383–93.
  • Xu X, Yang L, Xu X, Wang X, Chen X, Liang Q, Zeng J, Jing X. Ultrafine medicated fibers electrospun from W/O emulsions. J Control Release, 2005;108:33–42.
  • Zamani M, Prabhakaran MP, Ramakrishna S. Advances in drug delivery via electrospun and electrosprayed nanomaterials. Int J Nanomed, 2013;8:2997–3017.
  • Zhang ZY, Li XH, Wang CH, Fu SW, Liu YC, Shao CL. Polyacrylonitrile and carbon nanofibres with controllable nanoporous structures by electrospinning. Macromol Mat Eng, 2009;294:673–8.

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