Center for Micro-BioRobotics, Istituto Italiano Di Tecnologia, Viale Rinaldo Piaggio 34, 56025, Pontedera, PI, Italy.
The BioRobotics Institute, Scuola Superiore Sant'Anna, Viale Rinaldo Piaggio 34, 56025, Pontedera, PI, Italy.
Sci Rep. 2020 Oct 1;10(1):16341. doi: 10.1038/s41598-020-73252-4.
A real-time tool to monitor the electrospinning process is fundamental to improve the reproducibility and quality of the resulting nanofibers. Hereby, a novel optical system integrated through coaxial needle is proposed as monitoring tool for electrospinning process. An optical fiber (OF) is inserted in the inner needle, while the external needle is used to feed the polymeric solution (PEO/water) drawn by the process. The light exiting the OF passes through the solution drop at the needle tip and gets coupled to the electrospun fiber (EF) while travelling towards the nanofibers collector. Numerical and analytical models were developed to assess the feasibility and robustness of the light coupling. Experimental tests demonstrated the influence of the process parameters on the EF waveguide properties, in terms of waveguide length (L), and on the nanofibers diameter distribution, in terms of mean [Formula: see text] and normalized standard deviation [Formula: see text]. Data analysis reveals good correlation between L and [Formula: see text] (respectively maximum correlation coefficients of [Formula: see text] = 0.88 and [Formula: see text] = 0.84), demonstrating the potential for effectively using the proposed light-assisted technology as real-time visual feedback on the process. The developed system can provide an interesting option for monitoring industrial electrospinning systems using multi- or moving needles with impact in the scaling-up of innovative nanofibers for soft systems.
实时监测静电纺丝过程对于提高所得纳米纤维的重现性和质量至关重要。为此,提出了一种新型的同轴针集成光学系统作为静电纺丝过程的监测工具。将光纤 (OF) 插入内针中,而外针用于输送过程中拉伸的聚合物溶液 (PEO/水)。OF 出射的光穿过针尖处的溶液滴,并在向纳米纤维收集器行进的过程中与电纺纤维 (EF) 耦合。建立了数值和分析模型来评估光耦合的可行性和鲁棒性。实验测试表明,过程参数对 EF 波导特性(以波导长度 (L) 表示)和纳米纤维直径分布(以平均值 [Formula: see text] 和归一化标准偏差 [Formula: see text] 表示)的影响。数据分析表明,L 和 [Formula: see text] 之间存在良好的相关性(分别最大相关系数 [Formula: see text] = 0.88 和 [Formula: see text] = 0.84),表明有效利用所提出的光辅助技术作为过程实时视觉反馈的潜力。所开发的系统可以为使用多针或移动针的工业静电纺丝系统的监测提供一个有趣的选择,这对创新的软系统纳米纤维的规模化具有影响。