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Fabrication and Optimization of Processing Parameters of 2D/3D Arrays Of Composite Pet Electrospun Nanofibrous Webs


Affiliations
1 Department of Textile Technology, Uttar Pradesh Textile Technology Institute, Kanpur 208 001, India
2 Directorate of Nanomaterials, Defence Materials and Stores Research & Development Establishment, Kanpur 208 013, India
 

Pristine and functional carbon nanofillers reinforced composite nanofibrous web of polyethylene terephthalate (PET) have been fabricated by the horizontal needle-based electrospinning technique. The nano materials are used to introduce the multi functionalities, like electrical conductivity, thermal stability and multiple adsorption sites. The nanocomposite nanofibrous webs are produced by mixing various weight percentages of 2D and 3D nanofillers in the matrix polymer solution. The micro structural morphologies, thermal stability, tensile strength of PET as well as the functional groups of nanofillers surface are optimized for making the 2D/3D assemblies multifunctional. The hybrid nanofibrous web is characterized by field emission scanning electron microscopy, thermal gravimetric analysis, universal testing machine, gel permeation chromatography and fourier transformed infrared spectrometer respectively. It has been found that the range of mean diameter of nanofibres lies between 165 nm and 272 nm due to the differential viscosity of nanofillers reinforced polymeric solution. The detailed structure-property studies are carried out on the reinforced functional PET nanofibres for various strategic applications.

Keywords

2D Polymeric Nanofibres, Electrospinning, Mechanical Properties, Nano Fillers, Polyethylene Terephthalate.
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  • Huang Z M, Zhang Y Z, Kotaki M & Ramakrishna S, Compos Sci Technol, 63 (2003) 2223.
  • Ki M Y, Christopher J, Hogan J & Yasuko M, Chem Eng Sci, 62, (2007) 4751.
  • Subbiah T, Bhat G S, Tock R W, Parameswaran S & Ramkumar S S, J App Polym Sci, 96 (2005) 557.
  • Strain I N, Wu Q, Pourrahimi A M, Hedenqvist M S & Olsson R T, J Mater Chem A, 3 (2015) 1632.
  • Zander N E, Gillan M & Sweetser D, Materials, 9 (2016) 247. 6 Song K, Zhang Y, Meng J, Green E C, Tajaddod N, Li H & Minus M L, Materials, 6 (2013) 2543.
  • Bandla S and Hanan J C, J Mater Sci, 47 (2012) 876. 8 Min B G, Chae H G, Minus M L & Kumar S, Transworld Res Network, (2009) 43.
  • Janghela S, Devi S, Kambo N, Roy D, Mukhopadhyay K & Prasad N E, Soft Matter, 34 (2019) 1-7.
  • Gupta M K & Gond R K, Indian J Fibre Text Res, 46 (2021) 9. 11 Hussain M M & Ramkumar S S, Indian J Fibre Text Res, 31 (2006) 41.
  • Bhardwaj N & Kundu S C, Biotechnol Adv, 28 (2010), 325.
  • Wong S C, Baji A & Leng S, Polymer, 49 (2008) 4713.

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  • Fabrication and Optimization of Processing Parameters of 2D/3D Arrays Of Composite Pet Electrospun Nanofibrous Webs

Abstract Views: 128  |  PDF Views: 92

Authors

Shanu Prabhakar
Department of Textile Technology, Uttar Pradesh Textile Technology Institute, Kanpur 208 001, India
Jitendra Pratap Singh
Department of Textile Technology, Uttar Pradesh Textile Technology Institute, Kanpur 208 001, India
Debmalya Roy
Directorate of Nanomaterials, Defence Materials and Stores Research & Development Establishment, Kanpur 208 013, India

Abstract


Pristine and functional carbon nanofillers reinforced composite nanofibrous web of polyethylene terephthalate (PET) have been fabricated by the horizontal needle-based electrospinning technique. The nano materials are used to introduce the multi functionalities, like electrical conductivity, thermal stability and multiple adsorption sites. The nanocomposite nanofibrous webs are produced by mixing various weight percentages of 2D and 3D nanofillers in the matrix polymer solution. The micro structural morphologies, thermal stability, tensile strength of PET as well as the functional groups of nanofillers surface are optimized for making the 2D/3D assemblies multifunctional. The hybrid nanofibrous web is characterized by field emission scanning electron microscopy, thermal gravimetric analysis, universal testing machine, gel permeation chromatography and fourier transformed infrared spectrometer respectively. It has been found that the range of mean diameter of nanofibres lies between 165 nm and 272 nm due to the differential viscosity of nanofillers reinforced polymeric solution. The detailed structure-property studies are carried out on the reinforced functional PET nanofibres for various strategic applications.

Keywords


2D Polymeric Nanofibres, Electrospinning, Mechanical Properties, Nano Fillers, Polyethylene Terephthalate.

References