Chen Guan-Jie, Lai Hsin-Yi, Lu Pin-Hsien, Chang Yu-Chia, Wang Chi
Department of Chemical Engineering, National Cheng Kung University, Tainan, 701, Taiwan.
Macromol Rapid Commun. 2023 Jan;44(1):e2200273. doi: 10.1002/marc.202200273. Epub 2022 May 27.
Herein, the direct morphological evidence of the extension-induced phase-separated structures in the electrospinning jet observed by high-speed video imaging and by light scattering technique is reported. Model solutions of poly(vinyl alcohol) (PVA)/water are electrospun. Two types of internal structures, that is, long strings and short ellipsoids, are found. A light scattering model is derived for the V scattering configuration to account for the scattered intensities contributed from the liquid jet itself and those from the internal structures. For the severely stretching jet of PVA/water, the Vv intensity profile is dominant by the internal structures to mask the scattering contribution from the jet itself. Moreover, the H intensity profile reflects the anisotropy of the oriented chains parallel to the jet axis. For the 7 wt% solution, the derived extension rate in the vicinity of the Taylor cone apex is about 3420 s , which is higher than the Rouse relaxation rate measured by rheometer. It is concluded that extension-induced phase separation of the single-phase PVA solution is likely to occur in Taylor-cone apex to trigger the self-assembly process for producing strings (and/or bulges) in the flowing jet, which eventually transform to become the nanofibers, after solvent removal, to be collected on the grounded collector.
本文报道了通过高速视频成像和光散射技术观察到的电纺射流中拉伸诱导相分离结构的直接形态学证据。对聚乙烯醇(PVA)/水的模型溶液进行了电纺。发现了两种内部结构,即长串和短椭球体。推导了用于V散射配置的光散射模型,以解释液体射流本身以及内部结构所贡献的散射强度。对于PVA/水的严重拉伸射流,Vv强度分布主要由内部结构主导,从而掩盖了射流本身的散射贡献。此外,H强度分布反映了平行于射流轴的取向链的各向异性。对于7 wt%的溶液,在泰勒锥顶点附近推导得到的拉伸速率约为3420 s⁻¹,高于流变仪测量的Rouse松弛速率。得出结论,单相PVA溶液在泰勒锥顶点可能发生拉伸诱导相分离,从而触发自组装过程,在流动射流中产生串(和/或凸起),在去除溶剂后最终转变为纳米纤维,并收集在接地的收集器上。