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连续的旋转电极式无针尖静电纺丝
引用本文:孙道恒,邱小椿,许志钦,胡兴旺,何广奇,林立伟,吴德志.连续的旋转电极式无针尖静电纺丝[J].纳米技术与精密工程,2013(5):391-395.
作者姓名:孙道恒  邱小椿  许志钦  胡兴旺  何广奇  林立伟  吴德志
作者单位:[1]厦门大学物理与机电工程学院,厦门361005 [2]广东出入境检验检疫局,广州510623 [3]美国加州大学伯克利分校机械丁程系伯克利传感器与执行器中心,伯克利94720
基金项目:国家自然科学基金资助项目(51035002,51205334);福建省自然科学基金资助项目(2011J05139).
摘    要:连续供液的旋转电极式无针尖静电纺丝采用圆柱滚筒电极代替喷丝头实现了高产量纳米纤维制造.该方法避免了喷丝头的堵塞问题,同时也实现了纳米纤维的连续生产.本文利用扫描电镜(SEM)探讨了该制作过程中的关键参数。如溶液浓度、偏置电压、旋转速度以及溶液厚度等对纳米纤维直径的影响.实验结果表明,纳米纤维的平均直径随溶液浓度、圆柱滚筒电极旋转速度和溶液厚度的增大而增大,但随着偏置电压、圆柱滚筒电极直径的增大而减小.圆柱滚筒电极长度为12cm、直径为60mm时制备的纳米纤维产量高达8.7g/h,且纳米纤维的直径均小于500nm.

关 键 词:无针尖静电纺丝  高产量  纳米纤维

Continuous Tipless Electrospinning with Rotatory Electrode
Sun Daoheng,Qiu Xiaochun,Xu Zhiqin,Hu Xingwang,He Guangqi,Lin Liwei,Wu Dezhi.Continuous Tipless Electrospinning with Rotatory Electrode[J].Nanotechnology and Precision Engineering,2013(5):391-395.
Authors:Sun Daoheng  Qiu Xiaochun  Xu Zhiqin  Hu Xingwang  He Guangqi  Lin Liwei  Wu Dezhi
Affiliation:1. School of Physics and Mechanical and Electrical Engineering, Xiamen University, Xiamen 361005, China; 2. Guangdong Entry-Exit Inspection and Quarantine Bureau, Guangzhou 510623, China; Department of Mechanical Engineering, Berkeley Sensor and Actuator Center, University of California, Berkeley 94720, USA)
Abstract:Tipless electrospinning with rotatory electrode and continuous supply polymer solution, which uses a cylindrical-shape rotatory electrode to replace syringe spinneret, is a novel method for massive pro- duction of nanofibers. It not only avoids the blockage of spinneret but also realizes the continuous produc- tion of nanofibers. In this paper, the effects of some key parameters such as solution concentration, ap- plied bias voltage, rotatory speed and thickness of solution on the diameter of nanofibers were discussed via scanning electron microscope (SEM). The results demonstrate that the mean diameter of electrospun nanofibers increases with the increase of solution concentration, rotatory speed of cylindrical-shape rotato- ry electrode and thickness of solution, but decreases with the increase of applied bias voltage and diame- ter of cylindrical-shape rotatory electrode. The output of nanofibers achieved 8.7 g/h for a cylindrical- shape rotatory electrode ( 12 cm in length and 60 mm in diameter), and the diameters of nanofibers were less than 500 nm.
Keywords:tipless electrospinning  high-throughput  nanofiber
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