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Molecularly Imprinted Polyethersulfone Microfibers for the Binding and Recognition of Bisphenol A

机译:分子印迹聚醚砜微纤维对双酚A的结合和识别

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摘要

Bisphenol A (BPA)-imprinted polyethersulfone (PES) microfibers for the recognition of BPA were prepared by means of wet-spinning method based on the liquid-liquid phase separation technique. Two kinds of the BPA-imprinted microfibers were fabricated with the diameters of about 85 mu m and 265 pm, respectively. Extraction of BPA from the microfibers; was carried out by immersing the imprinted microfibers into ethanol. In the recognition experiments, the binding amounts were about 24.0, 43.0, and 70.0 mu mol/g for the nonimprinted microfibers, whereas those were about 50.0, 87.0, 120.0 mu mol/g for the imprinted PES microfibers with the diameter of about 85 mu m in 100, 200, and 400 mu M BPA solution, respectively. Both of the bindin- amounts and the adsorption rate for the imprinted microfibers with smaller diameter were higher than that for the microfibers with larger diameters. The selectivity results indicated that the BPA-imprinted microfibers showed higher recognition coefficient (alpha) for BPA than phenol.
机译:基于液-液相分离技术,采用湿纺法制备了双酚A(BPA)印迹的聚醚砜(PES)微纤维。制作了两种BPA印迹超细纤维,其直径分别约为85微米和265微米。从超细纤维中提取双酚A;通过将压印的微纤维浸入乙醇中进行。在识别实验中,非印迹微纤维的结合量约为24.0、43.0和70.0μmol/ g,而直径约为85μm的印迹PES微纤维的结合量约为50.0、87.0、120.0μmol / g。分别在100、200和400μMBPA溶液中分离直径较小的压印超细纤维的结合蛋白量和吸附率均高于直径较大的压印超细纤维。选择性结果表明,印有BPA的超细纤维对BPA的识别系数(α)高于酚。

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