Kadhirvel Porkodi, Azenha Manuel, Silva A Fernando, Sellergren Börje
Centro de Investigação em Química and Faculdade de Ciências, University of Porto, 4169 007 Porto, Portugal.
Centro de Investigação em Química and Faculdade de Ciências, University of Porto, 4169 007 Porto, Portugal.
J Chromatogr A. 2014 Aug 15;1355:158-63. doi: 10.1016/j.chroma.2014.06.013. Epub 2014 Jun 10.
A different approach to the preparation of microspheric particles of molecularly imprinted xerogels (MIX) is presented here. The technique consisted of filling up the pores of spherical, mesoporous, bare silica particles with a pregelification mixture by applying pressure. Upon gelification and drying, thin layers of MIX were deposited on the mesopores. Spherical composites of S-naproxen (S-NAP) imprints were produced by following this simple strategy. The performance of the imprints was quite satisfactory in terms of recognition ability (ascertained by selectivity against ibuprofen, α=4.9, and an imprinting factor of 13) whereas an outstanding improvement on dynamic features (expressed as column efficiency), as compared to the corresponding bulk format MIX (9 vs. 1.2 theoretical plates/cm), was reached.
本文介绍了一种制备分子印迹干凝胶微球颗粒(MIX)的不同方法。该技术包括通过施加压力用预凝胶化混合物填充球形、中孔、裸二氧化硅颗粒的孔隙。凝胶化和干燥后,MIX薄层沉积在中孔上。按照这种简单策略制备出了S-萘普生(S-NAP)印迹的球形复合材料。就识别能力而言(通过对布洛芬的选择性确定,α = 4.9,印迹因子为13),印迹的性能相当令人满意,而与相应的块状MIX相比(9对1.2理论塔板/厘米),在动态特性(以柱效率表示)方面有显著改善。