Department of Chemistry, Faculty of Science, Jamia Hamdard, New Delhi 110062, India.
Department of Chemistry, Faculty of Science, Jamia Hamdard, New Delhi 110062, India.
Adv Colloid Interface Sci. 2016 Mar;229:1-24. doi: 10.1016/j.cis.2015.12.003. Epub 2015 Dec 17.
Fabrication of polymer derived electrospun nanofibers by electrospinning as chromatographic sorbent bed for ultra-thin layer chromatography (UTLC) is a very demanding topic in analytical chemistry. This review presents an overview of recent development in the fabrication of polymer derived electrospun nanofibers and their applications to design UTLC plates as stationary phases for on-plate identification and separation of analytes from their mixture solutions. It has been reported that electrospun fiber based stationary phases in UTLC have enhanced separation efficiency to provide separation of analyte mixture in a shorter development time than those of traditional particle-based TLC stationary phases. In addition, electrospun UTLC is cost effective and can be modified for obtaining different surface selectivities by changing the polymer materials to electrospun devices. Electrospun UTLC plates are not available commercially till date and efforts are being rendered for their commercialization. The morphology and diameter of electrospun nanofibers are highly dependent on several parameters such as type of polymer, polymer molecular weight, solvent, viscosity, conductivity, surface tension, applied voltage, collector distance and flow rate of the polymer solution during electrospinning process. Among the aforementioned parameters, solution viscosity is an important parameter which is mainly influenced by polymer concentration. This review provides evidence for the fabrication of UTLC plates containing electrospun polymer nanofibers. Furthermore, the future prospects related to electrospinning and its application in obtaining of different types of electrospun nanofibers are discussed. The present communication is aimed to review the work which appeared during 2009-2014 on the application of polymer derived electrospun nanofibers in ultra thin layer chromatography.
通过静电纺丝将聚合物衍生的电纺纳米纤维制造为超薄层色谱(UTLC)的色谱固定相床是分析化学中非常高要求的课题。本综述介绍了聚合物衍生的电纺纳米纤维的最新发展,以及它们在设计 UTLC 板作为固定相用于对混合物溶液中的分析物进行板上鉴定和分离的应用。据报道,与传统基于颗粒的 TLC 固定相相比,基于电纺纤维的固定相在 UTLC 中具有增强的分离效率,可在更短的展开时间内提供分析物混合物的分离。此外,电纺 UTLC 具有成本效益,并且可以通过改变聚合物材料来对电纺设备进行修改以获得不同的表面选择性。迄今为止,电纺 UTLC 板还没有商业化,正在努力实现其商业化。电纺纳米纤维的形态和直径高度依赖于几个参数,例如聚合物类型、聚合物分子量、溶剂、粘度、导电性、表面张力、施加电压、收集器距离和聚合物溶液在静电纺丝过程中的流速。在上述参数中,溶液粘度是一个重要参数,主要受聚合物浓度的影响。本综述提供了制造含有电纺聚合物纳米纤维的 UTLC 板的证据。此外,还讨论了与静电纺丝及其在获得不同类型电纺纳米纤维中的应用相关的未来前景。本通讯旨在综述 2009-2014 年期间在聚合物衍生的电纺纳米纤维在超薄层色谱中的应用方面的工作。