The Petroleum and Petrochemical College, Chulalongkorn University, Bangkok 10330, Thailand.
J Chromatogr A. 2013 Jul 19;1299:110-7. doi: 10.1016/j.chroma.2013.05.011. Epub 2013 May 10.
For the first time, electrospun nanofiber phases were fabricated with manganese-activated zinc silicate as photoluminescent indicator (UV254) to transfer and enlarge its application to the field of UV-active compounds. By integration of such an indicator, UV-active compounds got visible on the chromatogram. The separation of 7 preservatives and a beverage sample were studied on the novel luminescent polyacrylonitrile layers. The mat thickness and mean fiber diameters were calculated for additions of different UV254 indicator concentrations. The separation efficiency on the photoluminescent layers was characterized by comparison to HPTLC layers and calculation of the plate numbers and resolutions. Some benefits were the reduction in migration distance (3cm), migration time (12min), analyte (10-nL volumes) and mobile phase volumes (1mL). As ultrathin stationary phase, such layers are suited for their integration into the Office Chromatography concept. For the first time, electrospun nanofiber layers were hyphenated with mass spectrometry and the confirmation of compounds was successfully performed using the elution-head based TLC-MS Interface.
首次采用锰激活硅酸锌作为光致发光指示剂(UV254)制备了电纺纳米纤维相,以将其应用范围扩展到 UV 活性化合物领域。通过集成这种指示剂,可在色谱图上显示 UV 活性化合物。在新型发光聚丙烯腈层上研究了 7 种防腐剂和一种饮料样品的分离。通过比较 HPTLC 层并计算板数和分辨率,计算了不同 UV254 指示剂浓度添加物的层厚度和平均纤维直径。通过减少迁移距离(3cm)、迁移时间(12min)、分析物(10-nL 体积)和流动相体积(1mL)来表征光致发光层的分离效率。作为超薄固定相,此类层适用于将其集成到办公色谱概念中。首次将电纺纳米纤维层与质谱联用,并使用基于洗脱头的 TLC-MS 接口成功地对化合物进行了确证。