Research and Development in Electrospinning Theory and Technology

Article Preview

Abstract:

Based on the analysis of much related literature, the present article introduced some of the latest theoretical models and technologies. Meanwhile, it sums up two important issues in electrospinning development. One is that more studies will focus on melt fiber refinement and improving position accuracy. Another is orderly collection and spinning efficiency will be emphasized. This study provides a clear direction for further development of electrospinning.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

695-700

Citation:

Online since:

March 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] X.F. Lu, W.J. Zhang, C. Wang, T.C. Wen, Y. Wei, One-dimensional conducting polymer nanocomposites: Synthesis, properties and applications, Prog. Polym. Sci. 36 (2011) 671-712.

DOI: 10.1016/j.progpolymsci.2010.07.010

Google Scholar

[2] Z.X. Liu, Y. Liu, Y.M. Ding, H.Y. Li, H.B. Chen, W.M. Yang, Tug of war effect in melt electrospinning, J. Non-Newt. Flu. Mec. 202 (2013) 131-136.

DOI: 10.1016/j.jnnfm.2013.10.001

Google Scholar

[3] Z.W. Li, X.X. Jia, J. Zhang, Z.Y. Sun, Y. Zhong, Designing nano-strctures of block copolymers via computer simulation, Acta. Polym. Sin. 9 (2011) 973-983.

DOI: 10.3724/sp.j.1105.2011.11102

Google Scholar

[4] G.S. Taylor, Electrically driven jets, Proc. Roy. Soc London A, 313 (1969) 453- 475.

Google Scholar

[5] L. Larrondo, R. S. Manley, Electrostatic fiber spinning from polymer melts, J. Polym. Sci., Polym. Phys. 19 (1981) 909- 920.

DOI: 10.1002/pol.1981.180190601

Google Scholar

[6] H.Y. Du, J. Wang, J. Wang, Modeling and simulation study of motion locus in electrospinning, Mater. Sci. Thec. 20 (2012) 56-62.

Google Scholar

[7] Y.Y. Zhong, Simulation and experimental investigation of steady state jet in electrospinning, Xiamen University, (2009).

Google Scholar

[8] X. Wang, Y. Liu, H. Yan, C.F. Guan, W.M. Yang, DPD simulation of fiber falling in melt electrospinning, J. CIESC. 63 (2012) 320-324.

Google Scholar

[9] X. Wang. Computer simulation and experimental verification of melt electrospinning, Beijing Univ of Chem Technol, (2012).

Google Scholar

[10] Y.F. Sun, Investigation of micro-nano fiber formation, Donghua University, (2011).

Google Scholar

[11] H. Wang, W.W. Li, A. Chen, G.F. Zheng. Advances in electrospinning technology for preparing nanofibers. J. G.D. Univ. Tech. 29 (2012) 78-82.

Google Scholar

[12] W.W. Li, G.F. Zhang, X. Wang, D.H. Sun. Position deposition of electrospinning direct-writing nanofiber on pattern substrate. Opti. Prec. Engi. 18 (2010) 2231-2238.

Google Scholar

[13] H.H. Yuan. Preparation and characterization of aligned ultrafine fibers by stable jet electrospinning, Donghua University, (2012).

Google Scholar

[14] H.L. Wang, G.F. Zheng, D.H. Sun. Simulation of nanofibers movement for Near-Field Electrospinning. Advan. Mater. Rese. 60 (2009) 456-460.

DOI: 10.4028/www.scientific.net/amr.60-61.456

Google Scholar

[15] X.F. Wang, B. Ding, G. Sun, M. Wang, J.Y. Yu, Electro-spinning/netting: A strategy for the fabrication of three-dimensional polymer nano-fiber/nets, Prog. Mater. Sci. 58 (2013) 1173-1243.

DOI: 10.1016/j.pmatsci.2013.05.001

Google Scholar

[16] Roc. Kon, Man. Mis, Amar K. Moha, Niran. Karakb, Diameter-tuning of electrospun cellulose acetate fibers: A Box–Behnken design (BBD) study, Carb. Polym. 92 (2013) 1100-1106.

DOI: 10.1016/j.carbpol.2012.10.055

Google Scholar

[17] F. Dabirian, S. A. Hosseini Ravandil, A. R. Pishevar, The Effects of Operating Parameters on the Fabrication of Polyacrylonitrile Nanofibers in Electro-Centrifuge Spinning, Fib. Polym. 14 (2013) 1497-1504.

DOI: 10.1007/s12221-013-1497-1

Google Scholar

[18] A.H. Mohamed, K. Mourad, H. Omar. Centrifugal force spinning of PA6 nanofibers-processability and morphology of solution-spun fibers. J. Tex. Indus. 105 (2014) 637-647.

DOI: 10.1080/00405000.2013.842680

Google Scholar

[19] A. Valipouri, S. A. Hosseini Ravandi, A. R. Pishevar. A novel method for manufacturing nanofibers. Fib. Polym. 14 (2013) 941-949.

DOI: 10.1007/s12221-013-0941-6

Google Scholar

[20] H.J. Zhou, T.B. Green, Y. Lak. Joo, The temperature effects on electrospinning of polylactic acid melts, Polymer 47 (2006) 7497–7505.

DOI: 10.1016/j.polymer.2006.08.042

Google Scholar

[21] Y.Y. Yao, P.X. Zhu, H. Ye, A.J. Niu, X. S Gao , D.C. Wu, Polysulfone nanofibers prepared by electrospinning and gas-jet electrospinning, Acta Polym. Sin. 5 (2005) 687–692.

DOI: 10.1007/s11458-006-0041-4

Google Scholar

[22] X.H. Qin, X.W. Wang, Z.M. Hu, Z.F. Liu, S.Y. Wang, Study on Diameter and Process Relationship of Electrospun PAN Nanofiber. J. Dong Hua. Univ. (Natur Sci Ed). 31 (2005) 16–22.

Google Scholar

[23] L. Amalorpava Mary, T. Senthilram, S. Suganya, L. Nagarajan, J. Venugopal, S. Ramakrishna, V. R. Giri Dev. Centrifugal spun ultrafine fibrous web as a potential drug delivery vehicle. Express Polym. Lett. 7 (2013) 238-248.

DOI: 10.3144/expresspolymlett.2013.22

Google Scholar

[24] F. Dabirian, S. A. Hosseini Ravandi, A. R. Pishevar. The effects of operating parameters on the fabrication of polyacrylonitrile nanofibers in electro-centrifuge spinning. Fib. Polym. 14 (2013) 1497-1504.

DOI: 10.1007/s12221-013-1497-1

Google Scholar

[25] Y. Liu. A new technology, bubble electrospinning, for producing nanofibers. Donghua University, (2008).

Google Scholar

[26] X.H. Wang, Investigation of needleless thread electrospinning processes. Donghua university, (2013).

Google Scholar

[27] D.Z. Yang, J.F. Zhang, J. Zhang, J. Nie. Aligned Electrospun Nanofibers Induced by Magnetic Field. J Appl Polym Sci. 110 (2008) 3368–3372.

DOI: 10.1002/app.28896

Google Scholar

[28] D.Z. Yang, J.F. Zhang, J. Zhang, J. Nie. Aligned electrospun nanofibers induced by Magnetic field. J. Appl. Ploym. Sci. 110 (2008) 3368-3372.

DOI: 10.1002/app.28896

Google Scholar

[29] H. Wang, H.Z. Tang, J.H. He, Q.W. Wang. Fabrication of aligned ferrite nanofibers by magnetic-field-assisted electrospinning coupled with oxygen plasma treatment. Mater. Resec. Bull. 44 (2009) 1676-1680.

DOI: 10.1016/j.materresbull.2009.04.006

Google Scholar

[30] Z.Y. Liu, X. Li, Y. Yang, K. Zhang, X.F. Wang, M.F. Zhu. Control of structure and morphology of highly aligned PLLA ultrafine fibers via linear-jet electrospinning. Polymer 54 (2013) 6045-6051.

DOI: 10.1016/j.polymer.2013.08.051

Google Scholar

[31] C. Lu, P. Chen, J.F. Li, Y.J. Zhang. Computer simulation of electrospinning. Part I. Effect of solvent in electrospinning. Polymer 47 (2006) 915-921.

DOI: 10.1016/j.polymer.2005.11.090

Google Scholar

[32] J. B. Ballengee, P. N. Pintauro. Morphological control of electrospun Nafion Nanofiber Mats. J. Electro. Soci. 158 (2011) 568-572.

DOI: 10.1149/1.3561645

Google Scholar

[33] S.Q. Zhu. Morphological control of electrospun jets and the fiber structures & properties. Donghua University, (2013).

Google Scholar

[34] J. Rafique, J. Yu, J.L. Yu, G. Fang, K.W. Wong, Z. Zheng, H.C. Ong, W.M. Lau. Electrospinning highly aligned long polymer nanofibers on large scale by using a tip collector. Appl. Phys. Let. 97 (2007) 261–263.

DOI: 10.1063/1.2768871

Google Scholar

[35] G.H. KIM. Electrospinning Process Using Field-Controllable Electrodes. J. Polym. Sci. B Polym. Phys. 44 (2006) 1426–1433.

DOI: 10.1002/polb.20814

Google Scholar

[36] Y. Xin, D.H. Reneker. Garland formation process in electrospinning. Polymer 53 (2012) 3629-3635.

DOI: 10.1016/j.polymer.2012.05.060

Google Scholar

[37] N. Li, Q. Hui, H. Xue, J. Xiong. Electrospun Polyacrylonitrile nanofiber yarn prepared by funnel-shape collector. Mater. Lett. 79 (2012) 245-247.

DOI: 10.1016/j.matlet.2012.04.005

Google Scholar

[38] M. Gao, S. Huang, L. Dai, G. Wallace, R. Gao, Z. Wang, Aligned coaxial nanowires of carbon nanotubes sheathed with conducting polymers. Angew. Chem. Int. Ed. 39 (2000) 3664–3667.

DOI: 10.1002/1521-3773(20001016)39:20<3664::aid-anie3664>3.0.co;2-y

Google Scholar

[39] D.T. Zhang, L.X. Meng, Q. Xua, S. Bai, Z. Yang, Y. Qin, Electrospinning multi-layered nano-solenoidand reticular micro-tubular structure on a microfiber. Mater. Lett. 98 (2013) 153–156.

DOI: 10.1016/j.matlet.2013.02.011

Google Scholar

[40] G.Q. Chang, C.Y. Lu, X. Zheng, R.Y. Chen, X. Chen, Z. Chen. Preparation of PVP helical fiber by electrospinning with single collection upright copper needle. Acta. Polym. Sin. 7 (2009) 680-683.

DOI: 10.3724/sp.j.1105.2009.00680

Google Scholar