294
Views
4
CrossRef citations to date
0
Altmetric
Original Articles

Direct Electrospinning of Cellulose Acetate onto Polyurethane Sheet and Effect of Its Saponification on Mechanical Properties

, , ORCID Icon, ORCID Icon, &

References

  • Bhardwaj, N.; Kundu, S. C. Electrospinning: A fascinating fiber fabrication technique. Biotechnology Advances 2010, 28, 325–347.
  • Taylor, G. Electrically Driven Jets. Proceedings of the Royal Society of London A 1969., 313(1515), 453–475.
  • Zheng, J.; He, A.; Li, J.; Han, C. C. Polymorphism control of poly(vinylidenefluoride) through electrospinning. Macromolecular Rapid Communications 2007, 28, 2159–2162. DOI: 10.1002/marc.200700544.
  • Kongkhlang, T.; Tashiro, K.; Kotaki, M.; Chirachanchai, S. Electrospinning as a new technique to control the crystal morphology and molecular orientation of polyoxymethylene nanofibers. Journal of the American Chemical Society 2008, 130, 15460–15466.
  • Kostakova, E.; Seps, M.; Pokorny, P.; Lukas, D. Study of polycaprolactone wet electrospinning process. Express Polymer Letters 2014, 8, 554–564.
  • Cooley, J. F.; Eastman, A. Apparatus for electrically dispersing fluids. U.S. Patent 692,631, 1902.
  • Formhals, A. Process and apparatus for preparing artificial threads. U.S. Patent 1,975,504, 1934.
  • Norton, C. L.; Mass, B. Method of and apparatus for producing fibers or filamentary material. U.S. Patent 2,048,651, 1936.
  • Lyons, J.; Li, C.; Ko, F. Melt-electrospinning Part I: processing parameters and geometric properties. Polymer 2004, 45, 7597–7603.
  • Huang, Z.; Zhang, Y.; Kotaki, M.; Ramakrishna, S. A review on polymer nanofibers by electrospinning and their applications in nanocomposites. Composites Science and Technology 2003, 63, 2223–2253.
  • Rutledge, G. C.; Fridrikh, S. V. Formation of fibers by electrospinning. Advanced Drug Delivery Reviews 2007, 59, 1384–1391.
  • Kwon, G.; Gupta, K. C.; Jung, K.; Kang, I. Lamination of microfibrous PLGA fabric by electrospinning a layer of collagen- hydroxyapatite composite nanofibers for bone tissue engineering. Biomaterials Research 2017, 21, 1–12.
  • Li, W. J.; Laurencin, C. T.; Caterson, E. J.; Tuan, R. S.; Ko, F. K. Electrospun nanofibrous structure: a novel scaffold for tissue engineering. Journal of Biomedical Materials Research 2002, 60, 613–621.
  • Li, W.-J.; Tuli, R.; Okafor, C.; Derfoul, A.; Danielson, K. G.; Hall, D. J.; Tuan, R. S. A three-dimensional nanofibrous scaffold for cartilage tissue engineering using human mesenchymal stem cells. Biomaterials 2005, 26, 599–609.
  • Lukanina, K. I.; Grigoriev, T. E.; Krasheninnikov, S. V.; Mamagulashvilli, V. G.; Kamyshinsky, R. A.; Chvalun, S. N. Multi-hierarchical tissue-engineering ECM-Like scaffolds based on cellulose acetate with collagen and chitosan fillers. Carbohydrate Polymers 2018, 191, 119–126.
  • Vaz, C. M.; Tuijl, S.; Bouten, C. V.; Baaijens, F. P. Design of scaffolds for blood vessel tissue engineering using a multi-layering electrospinning technique. Acta Biomaterialia 2005, 1, 575–582.
  • Amna, T.; Yang, J.; Ryu, K. S.; Hwang, I. H. Electrospun antimicrobial hybrid mats: innovative packaging material for meat and meat-products. Journal of Food Science and Technology 2015, 52, 4600–4606.
  • Faccini, M.; Vaquero, C.; Amantia, D. Development of protective clothing against nanoparticle based on electrospun nanofibers. Journal of Nanomaterials 2012, 2012, 1–9.
  • Kakunuri, M.; Wanasekara, N. D.; Sharma, C. S.; Khandelwal, M.; Eichhorn, S. J. Three-dimensional electrospun micropatterned cellulose acetate nanofiber surfaces with tunable wettability. Journal of Applied Polymer Science 2017, 134, 44709–44715.
  • Chattopadhyay, S.; Hatton, T. A.; Rutledge, G. C. Aerosol filtration using electrospun cellulose acetate fibers. Journal of Materials Science 2016, 51, 204–217.
  • Ding, B.; Wang, M.; Wang, X.; Yu, J.; Sun, G. Electrospun nanomaterials for ultrasensitive sensors. Materials Today 2010, 13, 16–27.
  • Cremar, L.; Gutierrez, J.; Martinez, J.; Materon, L. A.; Gilkerson, R.; Xu, F.; Lozano, K. Development of antimicrobial chitosan-based nanofiber dressings for wound healing applications. Nanomedicine Journal 2018, 5, 6–14.
  • Pires, L. R. Electrospun Fibers for Drug and Molecular Delivery. In Electrofluidodynamic Technologies (EFDTs) for Biomaterials and Medical Devices; Guarino, V.; Ambrosio, L., Eds., Woodhead Publishing: Braga, 2018, 157–177.
  • Sridhar, R.; Lakshminarayanan, R.; Madhaiyan, K.; Barathi, V. A.; Lim, K. H. C.; Ramakrishna, S. Electrosprayed nanoparticles and electrospun nanofibers based on natural materials: applications in tissue regeneration, drug delivery and pharmaceuticals. Chemical Society Reviews 2015, 44, 790–814. DOI: 10.1039/c4cs00226a.
  • Botero, J. L.; Giner, S. T.; Figuerez, M. P.; Láinez, M. Á.; Lagaron, J. M. Superhydrophobic bilayer coating based on annealed electrospun ultrathin poly(ε-caprolactone) fibers and electrosprayed nanostructured silica microparticles for easy emptying packaging applications. Coatings 2018, 8, 1–15.
  • Knížek, R.; Karhánková, D.; Bajzík, V.; Jirsak, O. Lamination of nanofibre layers for clothing applications. Fibres & Textiles in Eastern Europe 2019, 27, 1, 16–21.
  • Mares, L. Method for depositing a layer of polymeric nanofibers prepared by electrostatic spinning of a polymer solution or melt on electrically nonconductive materials, and a multilayer composite thus prepared containing at least one layer of polymeric nanofibers. The Patent Cooperation Treaty (PCT), no. WO 2018/064992 A1, 2018.
  • Nicosia, A.; Keppler, T.; Müller, F.; Vazquez, B.; Ravegnani, F.; Monticelli, P.; Belosi, F. Cellulose acetate nanofiber electrospun on nylon substrate as novel composite matrix for efficient, heat-resistant, air filters. Chemical Engineering Science 2016, 153, 284–294. DOI: 10.1016/j.ces.2016.07.017.
  • Hori, R.; Wada, M. The thermal expansion of wood cellulose crystals. Cellulose 2005, 12, 479–484.
  • Bergenstråhle, M.; Berglund, L. A.; Mazeau, K. Thermal response in crystalline I cellulose: a molecular dynamics study. Journal of Physical Chemistry B 2007, 111, 9138–9145.
  • Kalia, S.; Dufresne, A.; Cherian, B. M.; Kaith, B. S.; Avérous, L.; Njuguna, J.; Nassiopoulos, E. Cellulose-based bio- and nanocomposites: a review. International Journal of Polymer Science 2011, 2011, 1–35. DOI: 10.1155/2011/837875.
  • Njuguna, J.; Wambua, P.; Pielichowski, K.; Kayvantash, K. Natural fiber-reinforced polymer composites and nanocomposites for automotive applications. In Cellulose Fibers: Bio- and Nano-Polymers Composites Green Chemistry and Technology; Kalia, S., Kaith, B. S.; Kaur, I., Eds.; Springer Publishing Verlag: Berlin; Heidelberg, 2011, 661–700.
  • Credou, J.; Berthelot, T. Cellulose: From biocompatible to bioactive material. Journal of Materials Chemistry B 2014, 2, 4767–4788.
  • Sakurada, I.; Nukushina, Y.; Ito, T. Experimental determination of the elastic modulus of crystalline regions in oriented polymers. Journal of Polymer Science 1962, 57, 651–660.
  • Matsuo, M.; Sawatari, C.; Iwai, Y.; Ozaki, F. Effect of orientation distribution and crystallinity on the measurement by X-ray diffraction of the crystal lattice moduli of cellulose I and II. Macromolecules 1990, 23, 3266–3275.
  • Tashiro, K.; Kobayashi, M. Theoretical evaluation of three-dimensional elastic constants of native and regenerated celluloses: role of hydrogen bonds. Polymer 1991, 32, 1516–1526.
  • Jahanbaani, A. R.; Behzad, T.; Borhani, S.; Darvanjooghi, M. H. K. Electrospinning of cellulose nanofibers mat for laminated epoxy composite production. Fibers and Polymers 2016, 17, 1438–1448.
  • Fujibo Holdings, Inc. “Polishing Pad Business.” Product Information: Polishing Pad Business. www.fujibo.co.jp/en/division/polishingpad/product.html.
  • Sjobergs, E. R.; Manzis, A. E.; Khoog, K.; Dell, A.; Varkisli, A. Structural and immunological characterization of O-acetylated GD2. Journal of Biological Chemistry 1992, 267, 16200–16211.
  • Kim, J.; Chen, Y. Nanofiber formation in regenerated cellulose by saponification of cellulose acetate film. Journal of Nanotechnology in Engineering and Medicine 2011, 2, 011005.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.