Phan Duy-Nam, Choi Hyeong Yeol, Oh Seong-Geun, Kim Myungwoong, Lee Hoik
School of Textile-Leather and Fashion, Hanoi University of Science and Technology, 1 Dai Co Viet Road, Hanoi 100803, Vietnam.
Center for Textile science and engineering, PNC Labs Inc., Osan 18104, Korea.
Polymers (Basel). 2020 Aug 19;12(9):1859. doi: 10.3390/polym12091859.
We demonstrate a sequential electrospinning process involving the adsorption of ZnO nanoparticles on the surface of bio-based polyester, which is a terpolyester of a renewable isosorbide (ISB) monomer, ethylene glycol, 1,4-cyclohexane dimethanol, and terephthalic acid, the-so-called PEICT, to fabricate stable ZnO nanoparticles/PEICT nanofiber composite system protected with other two PEICT nanofiber mats. We found that post-electrospinning treatment with a particular solvent was effective to remove a residual solvent molecule in the PEICT nanofibers, which induced significant aggregation of the nanoparticles, leading to non-uniform distribution of the particles on the surface. Sequential electrospinning of the PEICT solution to sandwich ZnO nanoparticle-decorated PEICT nanofiber mat enabled to attain protected the inorganic/organic hybrid nanofiber mat, improving the long-term stability, and the reproducibility of the inorganic particles decorated nanofiber fabrication.
我们展示了一种连续静电纺丝工艺,该工艺涉及将氧化锌纳米颗粒吸附在生物基聚酯表面,这种生物基聚酯是由可再生的异山梨醇(ISB)单体、乙二醇、1,4 - 环己烷二甲醇和对苯二甲酸制成的三元共聚酯,即所谓的PEICT,以制备由另外两个PEICT纳米纤维垫保护的稳定的氧化锌纳米颗粒/PEICT纳米纤维复合体系。我们发现,用特定溶剂进行后静电纺丝处理可有效去除PEICT纳米纤维中的残留溶剂分子,这会导致纳米颗粒显著聚集,从而使颗粒在表面分布不均匀。将PEICT溶液进行连续静电纺丝以夹在装饰有氧化锌纳米颗粒的PEICT纳米纤维垫之间,能够实现对无机/有机杂化纳米纤维垫的保护,提高了长期稳定性以及装饰有无机颗粒的纳米纤维制造的可重复性。