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首页> 外文期刊>RSC Advances >Fabrication of nanofiber stationary phases from chopped polyacrylonitrile co-polymer microfibers for use in ultrathin layer chromatography of amino acids
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Fabrication of nanofiber stationary phases from chopped polyacrylonitrile co-polymer microfibers for use in ultrathin layer chromatography of amino acids

机译:由切碎的聚丙烯腈共聚物超细纤维制备纳米纤维固定相,用于氨基酸超薄层色谱

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摘要

Electrospun polyacrylonitrile (PAN) copolymer nanofiber based ultrathin layer chromatographic (UTLC) plates fabricated by a facile electrospinning method have been used as the stationary phase for on-plate identification and monitoring of the migration behavior of twenty amino acids using green solvents like n-butanol, ethylene glycol, ethyl acetate and their mixtures as the mobile phase. The PAN copolymer spun nanofibers exhibited physical and chemical robustness in the mobile phases used during the present study. Nanofiber sheets were produced using three different concentrations i.e. 8, 10 and 12 wt% of PAN at variable flow rates i.e. 0.2, 0.5 and 1.0 mL h(-1) for each solution of PAN. The surface morphology and diameter of the electrospun PAN nanofibers were examined using scanning electron microscopy techniques. The effect of layer thickness on chromatographic performance of UTLC plates in the separation of amino acids was also investigated. The electrospun PAN UTLC plates prepared from electrospinning 10% (w/v) PAN solution in dimethylformamide using a 0.2 mL h(-1) flow rate for about 1 h were found to be most efficient for imparting differential migration among the amino acids with the use of a mixture of n-butanol-ethylene glycol-ethyl acetate (5 : 3 : 2 by volume) as the mobile phase. The chromatographic performances of PAN derived UTLC plates and commercially available precoated silica HPTLC plates were compared in respect of their use in the analysis of amino acids. In addition, PAN derived UTLC plates were also compared with silica gel TLC plates and Dowex 50 ion exchange resin (Na+-form) for amino acid sensitivity. The PAN derived UTLC plates were found to be more useful at providing better sensitivity, rapidity and lower solvent requirement for development. The developed method was successfully applied for the identification of the lysine and methionine present in commercial drug samples.
机译:通过简便的静电纺丝法制备的静电纺聚丙烯腈(PAN)共聚物纳米纤维基超薄层色谱(UTLC)板已用作固定相,用于使用绿色溶剂(如正丁醇​​)进行板上鉴定和监测20种氨基酸的迁移行为,乙二醇,乙酸乙酯及其混合物作为流动相。 PAN共聚物纺成的纳米纤维在本研究中使用的流动相中表现出物理和化学强度。使用三种不同浓度的PAN,分别以PAN的每种溶液0.2、0.5和1.0 mL h(-1)的可变流速(即8、10和12 wt%的PAN)生产纳米纤维片材。使用扫描电子显微镜技术检查了电纺PAN纳米纤维的表面形态和直径。还研究了层厚对UTLC板色谱分离氨基酸的色谱性能的影响。发现使用0.2 mL h(-1)流速将1%(w / v)PAN溶液在二甲基甲酰胺中静电纺丝约1 h制备的静电纺PAN UTLC板最有效地赋予了氨基酸与氨基酸之间的差异迁移能力。使用正丁醇-乙二醇-乙酸乙酯(体积比为5:3:2)的混合物作为流动相。就其在氨基酸分析中的用途进行了比较,比较了PAN衍生的UTLC板和市售预涂的二氧化硅HPTLC板的色谱性能。此外,还将PAN衍生的UTLC板与硅胶TLC板和Dowex 50离子交换树脂(Na +型)的氨基酸敏感性进行了比较。发现PAN衍生的UTLC板在提供更好的灵敏度,速度和更低的显影要求方面更有用。所开发的方法已成功用于鉴定商业药物样品中存在的赖氨酸和蛋氨酸。

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