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非水介质中明胶水凝胶电场驱动行为的研究
引用本文:刘根起,赵晓鹏.非水介质中明胶水凝胶电场驱动行为的研究[J].功能高分子学报,2001,14(4):465-468,473.
作者姓名:刘根起  赵晓鹏
作者单位:西北工业大学电流变技术研究所,西安 710072
基金项目:国家自然科学基金重点项目 ( 5 9832 0 90 )资助
摘    要:研究了明胶水凝胶在绝缘硅油中的电场响应行为。结果表明,在硅油中,明胶水凝胶在外加高压直流电场作用下可发生运动,其运动由转动和平动两部分组成。存在一个运动所需的最小阈值电场,只有外加电场在此阈值以上时,才可观察到水凝胶明显的运动。水凝胶的运动速度随外加电场的增大而增大,其运动可通过外加电场的大小来调控。由硅油很稳定且在电场中会电解,因此避免了传统电场驱动水凝胶在水介质中响应时不可避免的电解缺点,为建立一种新的电响应凝毅然驱动方式提供了可能。

关 键 词:明胶水凝胶  电场驱动  非水介质  绝缘硅油  运动行为
文章编号:1008-9357(2001)04-0465-04

Study on the Action of Gelatin Hydrogel Driven by Electric Field in Nonaqueous Medium
LIU Gen qi,ZHAO Xiao peng.Study on the Action of Gelatin Hydrogel Driven by Electric Field in Nonaqueous Medium[J].Journal of Functional Polymers,2001,14(4):465-468,473.
Authors:LIU Gen qi  ZHAO Xiao peng
Abstract:Action of gelatin hydrogel crosslinked with glutaraldehyde under DC electric fields of high voltage was studied. The experimental results show that the hydrogel can be driven by DC electric fields of high voltage in the medium of silicone oil, and the action of the hydrogel is composed of rotation and translation. There is a low critical electric field intensity, below which the action of the hydrogel may not be observed. The motion velocity and angle of the rotation of gelatin hydrogel are influenced by the electric field intensity. Because silicone oil is very stable and hard to electrolyzed in electric field, electrochemical reaction, which is inevitable and disadvantageous in conventional systems of electric stimulus response hydrogel, don't happen. Our work has provided a novel kind of electric field driving methods for hydrogels.
Keywords:gelatin hydrogel  electric field driving  nonaqueoes medium
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