Gil-Castell Oscar, Galindo-Alfaro Diana, Sánchez-Ballester Soraya, Teruel-Juanes Roberto, Badia José David, Ribes-Greus Amparo
Instituto de Tecnología de Materiales (ITM), Universitat Politècnica de València (UPV), Camino de Vera s/n, 46022 Valencia, Spain.
Department of Chemical Engineering, School of Engineering, Universitat de València, Av. de la Universitat s/n, 46100 Burjassot, Spain.
Nanomaterials (Basel). 2019 Mar 8;9(3):397. doi: 10.3390/nano9030397.
Taking advantage of the high functionalization capacity of poly(vinyl alcohol) (PVA), bead-free homogeneous nanofibrous mats were produced. The addition of functional groups by means of grafting strategies such as the sulfonation and the addition of nanoparticles such as graphene oxide (GO) were considered to bring new features to PVA. Two series of sulfonated and nonsulfonated composite nanofibers, with different compositions of GO, were prepared by electrospinning. The use of sulfosuccinic acid (SSA) allowed crosslinked and functionalized mats with controlled size and morphology to be obtained. The functionalization of the main chain of the PVA and the determination of the optimum composition of GO were analyzed in terms of the nanofibrous morphology, the chemical structure, the thermal properties, and conductivity. The crosslinking and the sulfonation treatment decreased the average fiber diameter of the nanofibers, which were electrical insulators regardless of the composition. The addition of small amounts of GO contributed to the retention of humidity, which significantly increased the proton conductivity. Although the single sulfonation of the polymer matrix produced a decrease in the proton conductivity, the combination of the sulfonation, the crosslinking, and the addition of GO enhanced the proton conductivity. The proposed nanofibers can be considered as good candidates for being exploited as valuable components for ionic polyelectrolyte membranes.
利用聚乙烯醇(PVA)的高官能化能力,制备了无珠均匀纳米纤维垫。通过磺化等接枝策略引入官能团以及添加氧化石墨烯(GO)等纳米颗粒被认为会给PVA带来新特性。通过静电纺丝制备了两个系列的磺化和未磺化复合纳米纤维,它们具有不同的GO组成。使用磺基琥珀酸(SSA)可获得尺寸和形态可控的交联和功能化垫。从纳米纤维形态、化学结构、热性能和导电性方面分析了PVA主链的功能化以及GO最佳组成的确定。交联和磺化处理降低了纳米纤维的平均纤维直径,无论其组成如何,纳米纤维均为电绝缘体。添加少量GO有助于保持湿度,这显著提高了质子传导率。尽管聚合物基体的单一磺化导致质子传导率下降,但磺化、交联和添加GO的组合提高了质子传导率。所提出的纳米纤维可被视为用作离子聚电解质膜有价值组件的良好候选材料。