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Electro-blown spinning: New insight into the effect of electric field and airflow hybridized forces on the production yield and characteristics of nanofiber membranes

Elnabawy, Eman; Sun, Dongyang; Shearer, Neil; Shyha, Islam

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Abstract

Electro-blown spinning (EBS) is an emergent hybridized nanofibers formation technology. Recently, there has been a great interest in introducing this novel method for producing sub-micron, and nanofibers into several applications. For the first time, this comprehensive paper provides a detailed review for the EBS process, including working principle, operation parameters, nanofibers materials, setup modifications, and various applications. EBS is a hybridized nanofibers manufacturing process which combines between the solution-blown spinning (SBS) and electrospinning driving forces. The EBS process can produce outstanding spinning efficiency and superior nanofibers characteristics compared to the conventional spinning methods. Moreover, researchers have proved the efficient spinning capability of EBS with highly viscous polymers and its feasibility for large-scale production. Herein, we will show the potential of EBS to produce high-quality nanofibers and bring new insight into the process challenges and outcomes.

Citation

Elnabawy, E., Sun, D., Shearer, N., & Shyha, I. (2023). Electro-blown spinning: New insight into the effect of electric field and airflow hybridized forces on the production yield and characteristics of nanofiber membranes. Journal of Science: Advanced Materials and Devices, 8(2), Article 100552. https://doi.org/10.1016/j.jsamd.2023.100552

Journal Article Type Review
Acceptance Date Feb 28, 2023
Online Publication Date Mar 8, 2023
Publication Date 2023-06
Deposit Date Jul 13, 2023
Publicly Available Date Jul 13, 2023
Journal Journal of Science: Advanced Materials and Devices
Print ISSN 2468-2284
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 8
Issue 2
Article Number 100552
DOI https://doi.org/10.1016/j.jsamd.2023.100552
Keywords Nanofibers, Electro-blown spinning, Hybridized forces, Large-scale production
Public URL http://researchrepository.napier.ac.uk/Output/3144295

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