Preliminary study of cellulose acetate nanofibre produced through the tri-solvent technique
This paper presents a preliminary study of the multi-solvent effect on the formation of cellulose acetate nanofibre through the electrospinning method. Due to cellulose acetate nanofibre's potential application in various fields, a different solvent was suggested to produce consistent quality o...
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International Scientific Organization
2021
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my.utp.eprints.334322022-09-07T07:29:36Z Preliminary study of cellulose acetate nanofibre produced through the tri-solvent technique Abdullah, M.Z. Shuaib B M Saheed, M. Mohammat, M.F. Salleh, S.N.M. This paper presents a preliminary study of the multi-solvent effect on the formation of cellulose acetate nanofibre through the electrospinning method. Due to cellulose acetate nanofibre's potential application in various fields, a different solvent was suggested to produce consistent quality of cellulose acetate nanofibre. The solvent utilised in the study were acetone and water, while ethanol was added to the formulation. An attempt to add ethanol to acetone/water mix-solvent was performed to determine whether the tri-solvent technique could produce the nanofibre. The produced nanofibre was characterised using SEM to study the nanofibre morphology. The tri-solvent approach efficiently produced cellulose acetate nanofibre with relatively low electrostatic field strength (EFS) with non-beaded nanofibre. © 2021 International Scientific Organization. All Rights Reserved. International Scientific Organization 2021 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85130142897&partnerID=40&md5=7ed3d5ad67b4159047c847de5d09206f Abdullah, M.Z. and Shuaib B M Saheed, M. and Mohammat, M.F. and Salleh, S.N.M. (2021) Preliminary study of cellulose acetate nanofibre produced through the tri-solvent technique. International Journal of Chemical and Biochemical Sciences, 20 . pp. 7-10. http://eprints.utp.edu.my/33432/ |
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This paper presents a preliminary study of the multi-solvent effect on the formation of cellulose acetate nanofibre through the electrospinning method. Due to cellulose acetate nanofibre's potential application in various fields, a different solvent was suggested to produce consistent quality of cellulose acetate nanofibre. The solvent utilised in the study were acetone and water, while ethanol was added to the formulation. An attempt to add ethanol to acetone/water mix-solvent was performed to determine whether the tri-solvent technique could produce the nanofibre. The produced nanofibre was characterised using SEM to study the nanofibre morphology. The tri-solvent approach efficiently produced cellulose acetate nanofibre with relatively low electrostatic field strength (EFS) with non-beaded nanofibre. © 2021 International Scientific Organization. All Rights Reserved. |
format |
Article |
author |
Abdullah, M.Z. Shuaib B M Saheed, M. Mohammat, M.F. Salleh, S.N.M. |
spellingShingle |
Abdullah, M.Z. Shuaib B M Saheed, M. Mohammat, M.F. Salleh, S.N.M. Preliminary study of cellulose acetate nanofibre produced through the tri-solvent technique |
author_facet |
Abdullah, M.Z. Shuaib B M Saheed, M. Mohammat, M.F. Salleh, S.N.M. |
author_sort |
Abdullah, M.Z. |
title |
Preliminary study of cellulose acetate nanofibre produced through the tri-solvent technique |
title_short |
Preliminary study of cellulose acetate nanofibre produced through the tri-solvent technique |
title_full |
Preliminary study of cellulose acetate nanofibre produced through the tri-solvent technique |
title_fullStr |
Preliminary study of cellulose acetate nanofibre produced through the tri-solvent technique |
title_full_unstemmed |
Preliminary study of cellulose acetate nanofibre produced through the tri-solvent technique |
title_sort |
preliminary study of cellulose acetate nanofibre produced through the tri-solvent technique |
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International Scientific Organization |
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2021 |
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85130142897&partnerID=40&md5=7ed3d5ad67b4159047c847de5d09206f http://eprints.utp.edu.my/33432/ |
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