论文标题
溶液参数对电纺聚(乙烯基氟化物)纳米纤维的相形成和形态的影响
Influence of Solution Parameters on Phase Formation and Morphology of Electrospun Poly(vinylidene fluoride) Nanofiber
论文作者
论文摘要
使用静电纺丝法和静电纺丝参数(例如PVDF浓度,DMF:丙酮比率)对不同相(α,\ b {eta}和γ)形成的静电纺丝参数的影响,并研究了静电纺丝的影响。通过对峰进行X射线衍射(XRD)和傅立叶转换红外(FTIR)光谱仪数据进行详细分析,以分配并准确识别与特定PVDF相相关的峰。 SEM显微照片进一步有助于理解所需的\ b {eta} - 相以及获得无珠纳米纤维条件的机理。有趣的是,发现相的形成机理主要由表面张力和粘度之间的平衡控制,而表面张力和粘度之间的平衡受到溶液中PVDF浓度和丙酮含量的控制。在完全无珠的纳米纤维中发现了适用于最大\ b {eta} - 相的PVDF浓度为20%(w/v)和DMF:丙酮比1:1。在基于PVDF的纳米复合材料中,对所需相和形态基本机制的方法和理解提出了优化\ b {eta} - 相和无珠纤维的指南。
Poly(vinylidene fluoride), PVDF nanofibers were prepared using electrospinning method and the influence of electrospinning parameters such as PVDF concentration, DMF:Acetone ratio on the formation of different phases (α, \b{eta}, and γ) and desired morphology were investigated. A detail analysis of X-ray diffraction (XRD) and Fourier-transform infrared (FTIR) spectrometer data by deconvoluting the peaks were carried out for assigning and accurately identifying the peaks associated to a particular PVDF phase. SEM micrographs further helped in understanding the mechanism of desired \b{eta}-phase as well as in obtaining a condition for bead-free nanofibers. Interestingly, the mechanism of formation of phases are found mostly governed by the balance between surface tension and viscosity which is controlled by PVDF concentration and acetone content in the solution. A PVDF concentration of 20% (w/v) and DMF:Acetone ratio 1:1 was found suitable for maximum \b{eta}-phase in a completely bead-free nanofibers. The methodology and understanding of underlying mechanism of desired phase and morphology suggest a guideline for optimization of \b{eta}-phase and bead-free fibers in PVDF-based nanocomposite as well.