University of Ljubljana, Faculty of Pharmacy, Aškerčeva cesta 7, 1000 Ljubljana, Slovenia.
Int J Pharm. 2013 Nov 1;456(1):125-34. doi: 10.1016/j.ijpharm.2013.07.078. Epub 2013 Aug 9.
Electrospinning is an efficient and flexible method for nanofiber production, but it is influenced by many systemic, process, and environmental parameters that govern the electrospun product morphology. This study systematically investigates the influence of relative humidity (RH) on the electrospinning process. The results showed that the morphology of the electrospun product (shape and diameter) can be manipulated with precise regulation of RH during electrospinning. Because the diameter of nanofibers correlates with their rigidity, it was shown that RH control can lead to manipulation of material mechanical properties. Finally, based on the solution's rheological parameter-namely, phase shift angle-we were able to predict the loss of homogenous nanofiber structure in correlation with RH conditions during electrospinning. This research addresses the mechanism of RH impact on the electrospinning process and offers the background to exploit it in order to better control nanomaterial properties and alter its applicability.
静电纺丝是一种高效灵活的纳米纤维生产方法,但它受到许多系统、工艺和环境参数的影响,这些参数控制着静电纺丝产品的形态。本研究系统地研究了相对湿度 (RH) 对静电纺丝过程的影响。结果表明,通过在静电纺丝过程中精确调节 RH,可以控制电纺产品的形态(形状和直径)。由于纳米纤维的直径与其刚性相关,因此表明 RH 控制可以导致材料机械性能的改变。最后,基于溶液的流变学参数——相移角,我们能够预测在静电纺丝过程中与 RH 条件相关的均匀纳米纤维结构的损失。本研究探讨了 RH 对静电纺丝过程的影响机制,并为利用该机制提供了背景,以更好地控制纳米材料的性能并改变其适用性。