Revolutionizing Industry Applications through Solution Blow Spinning (SBS): Innovations, Challenges, and Future Perspectives

Authors

  • Peipei Qin

DOI:

https://doi.org/10.54097/38371v84

Keywords:

Nanofibers, Solution Blow Spinning (SBS), Scalable Production.

Abstract

This review aims to discuss the development, issue, challenges and prospects of Solution Blow Spinning (SBS) for fabricating nanofibers. SBS has a combination of melt blowing and electrospinning where the process can be easily scaled up without the help of an electric field. It describes SBS’s usage in cleaning up contaminated environments, electronics, and the biomedical industry to show its versatility in different industries.

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References

Kenry, Lim CT. (2017). Nanofiber technology: current status and emerging developments. Progress in Polymer Science, 70, 1-17.

Dadol, G. C., Kilic, A., Tijing, L. D., et al. (2020). Solution blow spinning (SBS) and SBS-spun nanofibers: materials, methods, and applications. Materials Today Communications, 25, 101656.

Medeiros, E. S., Glenn, G. M., Klamczynski, A. P., et al. (2009). Solution blow spinning: a new method to produce micro- and nanofibers from polymer solutions. Journal of Applied Polymer Science, 113 (4), 2322-2330.

Da Silva Parize, D. D., Foschini, M. M., De Oliveira, J. E., et al. (2016). Solution blow spinning: parameters optimization and effects on the properties of nanofibers from poly (lactic acid) / dimethyl carbonate solutions. Journal of Materials Science, 51 (9), 4627-4638.

Li, Z, Song, J, Long, Y, Jia, C, Liu, Z, Li, L, et al. 2020, 'Large-scale blow spinning of heat-resistant nanofibrous air filters', Nano Research, vol.13, pp.861-867.

Khalid, B, Bai, X, Wei, H, Huang, Y, Wu, H & Cui, Y 2017, 'Direct blow-spinning of nanofibers on a window screen for highly efficient PM2. 5 removal', Nano letters, vol.17, no.2, pp.1140-1148.

Wang, D., Song, J., Wen, J., Yuan, Y., Liu, Z., Lin, S., ... & Wu, H. (2018). Significantly enhanced uranium extraction from seawater with mass-produced fully amidoximated nanofiber adsorbent. Advanced Energy Materials, 8 (33), 1802607.

Huang, Z, Kolbasov, A, Yuan, Y, Cheng, M, Xu, Y, Rojaee, R, et al. 2020, 'Solution blowing synthesis of Li-conductive ceramic nanofibers', ACS applied materials & interfaces, vol.12, no.14, pp.16200-16208.

Silva, VD, Simoes, TA, Loureiro, FJ, Fagg, DP, Figueiredo, FM, Medeiros, ES, et al. 2019, 'Solution blow spun nickel oxide/carbon nanocomposite hollow fibres as an efficient oxygen evolution reaction electrocatalyst', International Journal of Hydrogen Energy, vol.44, no.29, pp.14877-14888.

Ruiz, VM, Sirera, R, Martínez, JM & González-Benito, J 2020, 'Solution blow spun graded dielectrics based on poly (vinylidene fluoride) / multi-walled carbon nanotubes nanocomposites', European Polymer Journal, vol.122, pp.109397.

An, S, Sankaran, A & Yarin, AL 2018, 'Natural biopolymer-based triboelectric nanogenerators via fast, facile, scalable solution blowing', ACS applied materials & interfaces, vol.10, no.43, pp.37749-37759.

Tan, NPB, Paclijan, SS, Ali, HNM, Hallazgo, CMJS, Lopez, CJF & Ebora, YC 2019, 'Solution blow spinning (SBS) nanofibers for composite air filter masks', ACS Applied Nano Materials, vol.2, no.4, pp.2475-2483.

Alvarenga, AD & Correa, DS 2021, 'Composite nanofibers membranes produced by solution blow spinning modified with CO2-activated sugarcane bagasse fly ash for efficient removal of water pollutants', Journal of Cleaner Production, vol.285, pp.125376.

Li, Z., Song, J., Long, Y., Jia, C., Liu, Z., Li, L., Yang, C., Liu, J., Lin, S., Wang, H. and Liu, Y., 2020. Large-scale blow spinning of heat-resistant nanofibrous air filters. Nano Research, 13, pp.861-867.

Jia, C., Li, L., Song, J., Li, Z. and Wu, H., 2021. Mass production of ultrafine fibers by a versatile solution blow spinning method. Accounts of Materials Research, 2 (6), pp.432-446.

Paschoalin, RT, Traldi, B, Aydin, G, Oliveira, JE, Rütten, S, Mattoso, LH, et al. 2017, 'Solution blow spinning fibres: New immunologically inert substrates for the analysis of cell adhesion and motility', Acta biomaterialia, vol.51, pp.161-174.

El-Newehy, MH, El-Hamshary, H & Salem, WM 2021, 'Solution blowing spinning technology towards green development of urea sensor nanofibers immobilized with hydrazone probe', Polymers, vol.13, no.4, pp.531.

Lee, JS, Kim, HJ, Jung, S, Kim, J & Lee, MW 2020, 'Repair of disposable air filters by solution-blown nano/micro fibrous patches', ACS Applied Nano Materials, vol.3, no.11, pp.11344-11351.

Bijarimi, M, Ahmad, S & Rasid, R 2013, 'Mechanical, thermal and morphological properties of poly (lactic acid) / natural rubber nanocomposites', Journal of Reinforced Plastics and Composites, vol.32, no.21, pp.1656-1667.

Raimundo, RA, Silva, VD, Medeiros, ES, Macedo, DA, Simões, TA, Gomes, UU, et al. 2020, 'Multifunctional solution blow spun NiFe–NiFe2O4 composite nanofibers: structure, magnetic properties and OER activity', Journal of Physics and Chemistry of Solids, vol.139, pp.109325.

Khattab, TA, Rehan, M, Aly, SA, Hamouda, T, Haggag, KM & Klapötke, TM 2017, 'Fabrication of PAN-TCF-hydrazone nanofibers by solution blowing spinning technique: Naked-eye colorimetric sensor', Journal of environmental chemical engineering, vol.5, no.3, pp.2515-2523.

Soares, AC, Soares, JC, Paschoalin, RT, Rodrigues, VC, Melendez, ME, Reis, RM, et al. 2020, 'Immunosensors containing solution blow spun fibers of poly (lactic acid) to detect p53 biomarker', Materials Science and Engineering: C, vol.115, pp.111120.

Medeiros, ES, Glenn, GM, Klamczynski, AP, Orts, WJ & Mattoso, LH 2009, 'Solution blow spinning: A new method to produce micro‐and nanofibers from polymer solutions', Journal of applied polymer science, vol.113, no.4, pp.2322-2330.

Kolbasov, A, Sinha-Ray, S, Yarin, A & Pourdeyhimi, B 2017, 'Heavy metal adsorption on solution-blown biopolymer nanofiber membranes', Journal of Membrane Science, vol.530, pp.250-263.

Walton, IM, Cox, JM, Benson, CA, Patel, DDG, Chen, Y-S & Benedict, JB 2016, 'The role of atropisomers on the photo-reactivity and fatigue of diarylethene-based metal–organic frameworks', New Journal of Chemistry, vol.40, no.1, pp.101-106.

Leite, R, Santos, A, Severo, L, Neto, JD, Castellano, L, Neves, G, et al. 2020, 'Photocatalytic degradation of dyes and microorganism inactivation using solution blow spun silver-modified titania fibers', Ceramics International, vol.46, no.9, pp.13482-13490.

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Published

20-08-2024

How to Cite

Qin, P. (2024). Revolutionizing Industry Applications through Solution Blow Spinning (SBS): Innovations, Challenges, and Future Perspectives. Highlights in Science, Engineering and Technology, 112, 431-437. https://doi.org/10.54097/38371v84