摘要
经由溶胶-凝胶法过程,应用静电纺丝机原理,以聚乙烯醇(PVA)和无机盐(LiMn2O4)为前驱物,制备出了含有LiMn2O4无机组分的复合纳米纤维,为复合无机纳米纤维的制备方式供给了一条新的思路。实验中系统地研究了PVA的浓度对其所形成的纤维描摹特征的影响。PVA水溶液用于纺丝的最好质量分数约为8.0%。在实验过程中,随着PVA质量分数的渐渐增加,其所形成纤维的直径也随之渐渐增大,而溶液的黏度也在逐步增大,这就使得溶剂挥发变得越来越难,小液珠的表面难以构成理想的“泰勒锥”,电压过小,样品溶液无法纺丝,在针头处成水滴状落在针头下方。电压过大则会在纤维丝上呈现念珠形态,阻碍样品电纺时的形貌。实验表明,在施加18kV的高电压,默认机器的其它设定条件下,依托不同质量分数的PVA溶液可制备出三种不同的纤维。
In this paper,by sol-gel process,using the principle of electrostatic spinning machine,using polyvinyl alcohol(PVA),hereinafter referred to as PVA,and inorganic LiMn2 O4 as the forebody,the composite nanofibers containing inorganic LiMn2 O4 were prepared,which provided a new way for the preparation of composite inorganic nanofibers.The influence of the concentration of PVA on the fiber tracing characteristics was studied systematically.The best mass concentration of PVA solution for spinning was 8.0%.In the process of the experiment,with the gradual increase of PVA mass fraction,the resulting fiber diameter also gradually increased,and the viscosity of the solution also gradually increased,which makes the solvent volatilization becomes more and more difficult,the surface of small liquid beads is difficult to form an ideal " Taylor cone".The voltage is too low,the sample solution cannot be spun,and drops of water fall on the needle.If the voltage is too high,there will be a rosary shape on the fiber,which will hinder the appearance of the sample during electrospinning.Experiments have shown that three different fibers can be prepared by relying on PVA solutions of different mass fractions at a high voltage of18 kV and other settings of the default machine.
作者
王红玲
马涛
张玲
刘成
陈年
王红艳
WANG Hongling;MA Tao;ZHANG Ling;LIU Cheng;CHEN Nian;WANG Hongyan(Anhui Key Laboratory of spintronics and Nanomaterials,Suzhou University;Institute of Chemical Engineering,Suzhou University,Suzhou,Anhui 234000,China)
出处
《中国无机分析化学》
CAS
2019年第4期62-66,共5页
Chinese Journal of Inorganic Analytical Chemistry
基金
国家级大学生创新创业训练计划项目(201810379056)
关键词
聚乙烯醇
纳米纤维
静电纺丝机
polyvinyl alcohol
nanofibers
electrostatic spinning machine