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静电纺丝法制备高分子纳米纤维的成因研究(英文)

The Study on Origin of Electrospinning Nanofibers

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【作者】 辛志超王彦欣黄林军焦吉庆王瑶刘继宪黄震唐建国Laurence A.Belfiroe

【Author】 XIN Zhi-chao;WANG Yan-xin;HUANG Lin-jun;JIAO Ji-qing;WANG Yao;LIU Ji-xian;HUANG Zhen;TANG Jian-guo;Laurence A.Belfiroe;The National Base of International Sci.& Tech.Cooperation on Hybrid Materials,Institute of Hybrid Materials,Laboratory of New Fiber Materials and Modern Textile The Growing Base for State Key Laboratory,Qingdao University;Department of Chemical and Biological Engineering,Colorado State University;

【机构】 国家杂化材料国际科技合作示范基地,纤维新材料与现代纺织国家重点实验室培育基地,杂化材料研究所,材料科学与工程系,青岛大学Department of Chemical and Biological Engineering,Colorado State University

【摘要】 对静电纺丝法制备高分子纳米纤维的成因进行了探究,主要通过分析高分子的结构与纺丝条件,寻找到静电纺丝法制备纳米纤维材料的一般规律。通过扫描电子显微镜(SEM)观察了高分子结构、分子量、溶液浓度和溶剂对高分子纳米纤维形貌的影响。实验结果表明:决定能否形成纤维的主要因素是高分子的结构和分子量,纤维的直径随着高分子溶液浓度的增加而增加,溶剂的挥发速率对纤维的形貌有决定性的影响。因此,利用静电纺丝法制备纳米纤维时应着重考虑以上四个因素的影响。

【Abstract】 The origin of electrospinning nanofibers is want to study. The effects of two of the most important factors been have evaluated systematically: structure and electrospinning conditions,on the causes prepared by electrospinning. The morphology of the fibers was characterized by the SEM and find that the polymer structure,the molecular weight,solution concentration and the solvent is strongly correlated with the formation of the fibers.Structure and molecular weight affect their ability to form fibers. Solution concentration has been found to most strongly affect fiber size,with fiber diameter increasing with increasing solution concentration. The solvent has been found to most strongly affect fiber morphology beaucase of the volatilization rate. These results suggest that if the polymer meet the factors shown above,they will form the nanofibers that with good morphology.

【基金】 国家外专千人项目(WQ20123700111);国家自然科学基金项目(5127309);国家自然科学基金项目(51373081);山东省科技攻关项目(2010GGX10327)(2010~2011);青岛市科技计划基础研究项目(12-1-4-2-(5)-jch);青岛市科技计划基础研究项目(12-1-4-2-(8)-jch);青岛市国际合作资助项目(10-1-4-97-hz);国家外专局高端外国专家项目(GDW20123702160)资助
  • 【文献出处】 科学技术与工程 ,Science Technology and Engineering , 编辑部邮箱 ,2014年19期
  • 【分类号】TQ340.64
  • 【被引频次】5
  • 【下载频次】149
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