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溶剂在高压静电纺丝中的作用.pdf

1、 1 2 2 2 2(1. , 150001) (2. , 116012) _ H 2 C H 2 C H 2 C H C OH n m - EVOH , - (EVOH), _ 1, 2, 3 4, 5, 6, 7, 8, 9, 10 11 - EVOH), - EVOH ( 56-71mol% ) 1. / ; 2. DMAc 1. EVOH - 3 EVOH/ / EVOH/ DMAc EVOH/ / EVOH 1 EVOH , , 116012 0411-88993866 - 1 - 0 100 200 300 400 500 600 700 800 0.00 0.05 0.10 0

2、.15 0.20 0.25 Probability Fiber diameter/nm 0 50 100 150 200 250 0. 00 0. 05 0. 10 0. 15 0. 20 0. 25 0. 30 0. 35 0. 40 Probability Fiber diameter/nm 4. 18 20 22 24 26 28 30 32 34 36 100 200 300 400 500 600 700 800 viscosity/mp.s Temperature/ o cDMAC solutionIsopropyl alcohol/water solution 2. 3. / (

3、a) : / :10wt% 15KV C-SD :20cm (b) : / :10wt% 20KV C-SD:20cm (c) : DMAc :10wt% 15KV C-SD:20cm 0 100 200 300 400 500 600 700 800 0.00 0.05 0.10 0.15 0.20 0.25 Probability Fiber diameter/nm 5 4 a b / :10wt% 15 KV 20KV 100-600nm 100-500nm - 2 - 4 c DMAc :10wt% 15KV EVOH/ DMAc 50-120nm EVOH /NaCl/ 12,13

4、EVOH EVOH/ / EVOH DMAc 1. 2. 1. Y.M. Shin, M.M. Hohman, M.P. Brenner. Experimental characterization of electrospinning: the electrically forced jet and instabilities. Polymer 2001; 42: 9955-67. 2. D.H.Renker, W.Kataphinan, A.Theron, E.Zussman, A.L.Yarin. Nanofiber garlands of polycaprolactone by ele

5、ctrospinning. Polymer 2002; 43: 6785-6794 3. A.F.Spivak, Y.A.Dzenis, D.H. Reneker. A Model of Steady State Jet in the Electrospinning Process. Mechanics Research Communications 2000, 27(1): 37-42 4. H. Fong, I. Chun, D.H. Renker. Beaded nanofibers formed during electrospinning. Polymer 1990; 40: 458

6、5-92 5. Xinhua Zong, Shaofeng Ran, Dufei Fang. Control of structure, morphology and property in electrospun poly (glycolide-co-lactide) non-woven membranes via post-draw treatments. Polymer 2003, 44: 4959-4967 6. El-Refaie Kenawy, John M. Layman, Jessica R.Watkins. Electrospinning of poly(ethylene-c

7、o-vinyl alcohol) fibers. Biomaterials 2003, 24: 907-913 7. Jason Lyons, Christopher Li, Frank Ko, Melt-electrospinning part I processing - 3 - parameters and geometric properties. Polymer 2004, 45:7597-7603 8. Bin Ding, Eiji Kimura, Tomokazu Sato. Fabrication of blend biodegradable nanofibrous nonwo

8、ven mats via multi-jet electrospinning. Polymer 2004, 45: 1895-1902 9. Zheng-Ming Huang, Y. Z. Zhang, S. Ramakrishna. Electrospinning and mechanical characterization of gelatin nanofibers. Polymer 2004, 45: 5361-5368 10. Angelo Pedicini, Richard J, Farris. Mechanical behavior of electrospun polyuret

9、hane. Polymer 2003, 44: 6857-6862 11. Sachiko Sukigara, Milind Gandhi, Jonathan Ayutsede. Regeneration of Bombyx mori silk by electrospinning. Part 2. Process optimization and empirical modeling using response surface methodology. Polymer 2004; 45: 37013708 12. Li H B, Zhang W K, Zhang X, et al. Sin

10、gle molecule force spectroscopy on poly (vinyl alcohol) by atomic force microscopy. Macromol Rapid Commun 1998; 19: 609-611 13. Li H B, Zhang W K, Xu W Q, et al. Hydrogen bonding governs the elastic properties of poly (vinyl alcohol) in water: single- molecule force spectroscopic studies of PV A by

11、AFM. Macromolecules 2000; 33: 465-469 The Function of Solvent in Electrospinning ZHANG Yujun 1 , LU Chun 2 , LI Jianfeng 2 , CHEN Ping 2 , YU Qi 2(1. Dept. of Applied Chemistry, Harbin Institute of Technology, Harbin 150001) (2.Chemical School, Dalian University of technology, 116012) Abstract Elect

12、rospinning technique has been recognized as an efficient method to manufacture nanofiber. At present, researches focus on the structure and morphology of the fiber, a few investigations have reported the mechanism of electrospinning. In our experiment, the function of solvent was studied, choosing a

13、ppropriate polymer EVOH (Ethylene/vinyl alcohol copolymer) and different solvents. Results indicate that: diameters of fibers electrospun from different solvents were different; nano-fiber can be obtained choosing solvents with small interaction with the polymer. Keywords: electrospinning, EVOH, nano-fiber, viscosity - 4 -

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