The Controllable Surface Morphology of Polyimide (PI) Electrospun Fibers

被引:7
作者
Zhao, Xiaoyan [1 ]
Wang, Chenyi [2 ]
Ji, Junling [1 ]
Sun, Zheng [1 ]
机构
[1] Changzhou Univ, Coll Petrochem Engn, Changzhou 213164, Peoples R China
[2] Changzhou Univ, Sch Mat Sci & Engn, Changzhou 213164, Peoples R China
来源
JOURNAL OF MACROMOLECULAR SCIENCE PART B-PHYSICS | 2013年 / 52卷 / 02期
基金
中国国家自然科学基金;
关键词
electrospinning; fiber membrane; polyimide; roughness; surface morphology; water repellency; SUPERHYDROPHOBIC SURFACE; MEMBRANES;
D O I
10.1080/00222348.2012.704333
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Electrospun materials have been proposed for application for gas filtration, drug carriers, and tissue engineering. The surface morphology of electrospun fibers is the key for consideration for the above applications, such as pore size on the fiber surface, surface area, and roughness. In this work, we investigated the influence of polymer/solvent properties on soluble polyimide (PI) fibers. The studied PIs included three fluorinated aromatic polyimides containing naphthalene pendant groups. By using various solvents we adjusted the size, shape, and structure of the fibers. As a result, PI electrospun fibers could be achieved with width around 10 mu m. The rough and smooth surface morphologies were studied by scanning electron microscopy (SEM). Surface wettability of the electrospun fiber membranes were characterized by contact angle measurement. The contact angles on the electrospun PI fiber mats for water and glycerol were in the range of 137.6 degrees-144.5 degrees and 139.1 degrees-143.6 degrees, respectively. Moreover, the rough fiber surface could make the electrospun fiber membrane possess good adhesive force for liquids. The results suggest that we could widen the application of electrospun membranes through controlling the fiber morphology.
引用
收藏
页码:364 / 372
页数:9
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共 25 条
  • [1] Controlling the wettability properties of polyester fibers using grafted functional nanomaterials
    Boguslavsky, Yonit
    Fadida, Tania
    Talyosef, Yossi
    Lellouche, Jean-Paul
    [J]. JOURNAL OF MATERIALS CHEMISTRY, 2011, 21 (28) : 10304 - 10310
  • [2] Controlling surface morphology of electrospun polystyrene fibers: Effect of humidity and molecular weight in the electrospinning process
    Casper, CL
    Stephens, JS
    Tassi, NG
    Chase, DB
    Rabolt, JF
    [J]. MACROMOLECULES, 2004, 37 (02) : 573 - 578
  • [3] Polymerized Ionic Liquids: Solution Properties and Electrospinning
    Chen, Hong
    Elabd, Yossef A.
    [J]. MACROMOLECULES, 2009, 42 (09) : 3368 - 3373
  • [4] Pressure Control System for Electrospinning Process
    Druesedow, Charles J.
    Batur, Celal
    Cakmak, Miko
    Yalcin, Bans
    [J]. POLYMER ENGINEERING AND SCIENCE, 2010, 50 (04) : 800 - 810
  • [5] Preparation and biocompatibility of electrospun poly(L-lactide-co-ε-caprolactone)/fibrinogen blended nanofibrous scaffolds
    Fang, Zhengdong
    Fu, Weiguo
    Dong, Zhihui
    Zhang, Xiangman
    Gao, Bin
    Guo, Daqiao
    He, Hongbing
    Wang, Yuqi
    [J]. APPLIED SURFACE SCIENCE, 2011, 257 (09) : 4133 - 4138
  • [6] Preparation and Characterization of Gelatin-Poly(L-lactic) Acid/Poly(hydroxybutyrate-co-hydroxyvalerate) Composite Nanofibrous Scaffolds
    Feng, Shuqin
    Shen, Xinyuan
    Fu, Zhongyu
    Shao, Meiling
    [J]. JOURNAL OF MACROMOLECULAR SCIENCE PART B-PHYSICS, 2011, 50 (09): : 1705 - 1713
  • [7] Manufacture and Characterization of Poly (butylene terephthalate) Nanofibers by Electrospinning
    Forouharshad, Mehdi
    Saligheh, Omid
    Arasteh, Rouhollah
    Farsani, Reza Eslami
    [J]. JOURNAL OF MACROMOLECULAR SCIENCE PART B-PHYSICS, 2010, 49 (04): : 833 - 842
  • [8] Electrospinning Preparation and Drug-Delivery Properties of an Up-conversion Luminescent Porous NaYF4:Yb3+, Er3+@Silica Fiber Nanocomposite
    Hou, Zhiyao
    Li, Chunxia
    Ma, Pingan
    Li, Guogang
    Cheng, Ziyong
    Peng, Chong
    Yang, Dongmei
    Yang, Piaoping
    Lin, Jun
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2011, 21 (12) : 2356 - 2365
  • [9] Structure property correlations for electrospun nanofiber nonwovens
    Hussain, D.
    Loyal, F.
    Greiner, A.
    Wendorff, J. H.
    [J]. POLYMER, 2010, 51 (17) : 3989 - 3997
  • [10] A lotus-leaf-like superhydrophobic surface: A porous microsphere/nanofiber composite film prepared by electrohydrodynamics
    Jiang, L
    Zhao, Y
    Zhai, J
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2004, 43 (33) : 4338 - 4341