Role of chain entanglements on fiber formation during electrospinning of polymer solutions: good solvent, non-specific polymer-polymer interaction limit

被引:971
作者
Shenoy, SL
Bates, WD
Frisch, HL
Wnek, GE
机构
[1] Virginia Commonwealth Univ, Richmond, VA 23284 USA
[2] Univ Albany, Dept Chem, Albany, NY 12222 USA
关键词
electrospinning; chain entanglements; fiber formation;
D O I
10.1016/j.polymer.2005.03.011
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Chain entanglements are one of many parameters that can significantly influence fiber fort-nation during polymer electrospinning. While the importance of chain entanglements has been acknowledged, there is no clear understanding of how many entanglements are required to affect/stabilize fiber formation. In this paper, polymer solution rheology arguments have been extrapolated to formulate a semi-empirical analysis to explain the transition from electrospraying to electrospinning in the good solvent, non-specific polymer polymer interaction limit. Utilizing entanglement and weight average molecular weights (M-e, M-w), the requisite polymer concentration for fiber formation may be determined a priori, eliminating the laborious trial-and-error methodology typically employed to produce electrospun fibers. Incipient, incomplete fiber formation is correctly predicted for a variety of polymer/solvent systems at one entanglement per chain. Complete, stable fiber formation occurs at >= 2.5 entanglements per chain. (c) 2005 Elsevier Ltd. All rights reserved.
引用
收藏
页码:3372 / 3384
页数:13
相关论文
共 79 条
[41]   Effect of tacticity on coil dimensions and thermodynamic properties of polypropylene [J].
Jones, TD ;
Chaffin, KA ;
Bates, FS ;
Annis, BK ;
Hagaman, EW ;
Kim, MH ;
Wignall, GD ;
Fan, W ;
Waymouth, R .
MACROMOLECULES, 2002, 35 (13) :5061-5068
[42]  
Jun Z, 2003, E-POLYMERS
[43]   Introductory lecture - Aspects of polymer gels [J].
Keller, A .
FARADAY DISCUSSIONS, 1995, 101 :1-49
[44]   Release of tetracycline hydrochloride from electrospun poly(ethylene-co-vinylacetate), poly(lactic acid), and a blend [J].
Kenawy, ER ;
Bowlin, GL ;
Mansfield, K ;
Layman, J ;
Simpson, DG ;
Sanders, EH ;
Wnek, GE .
JOURNAL OF CONTROLLED RELEASE, 2002, 81 (1-2) :57-64
[45]   Electrospinning of poly(ethylene-co-vinyl alcohol) fibers [J].
Kenawy, ER ;
Layman, JM ;
Watkins, JR ;
Bowlin, GL ;
Matthews, JA ;
Simpson, DG ;
Wnek, GE .
BIOMATERIALS, 2003, 24 (06) :907-913
[46]   Effect of molecular weight on fibrous PVA produced by electrospinning [J].
Koski, A ;
Yim, K ;
Shivkumar, S .
MATERIALS LETTERS, 2004, 58 (3-4) :493-497
[47]   Definitions of entanglement spacing and time constants in the tube model [J].
Larson, RG ;
Sridhar, T ;
Leal, LG ;
McKinley, GH ;
Likhtman, AE ;
McLeish, TCB .
JOURNAL OF RHEOLOGY, 2003, 47 (03) :809-818
[48]  
LAYMAN JM, 2003, POLYM PREPR, V44, P94
[49]   Fabrication of titania nanofibers by electrospinning [J].
Li, D ;
Xia, YN .
NANO LETTERS, 2003, 3 (04) :555-560
[50]   Electrospun nanofibrous structure: A novel scaffold for tissue engineering [J].
Li, WJ ;
Laurencin, CT ;
Caterson, EJ ;
Tuan, RS ;
Ko, FK .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH, 2002, 60 (04) :613-621