S M Hassan Saad, E Amr Abd El-Galil, H A Elbehery Nada, A Al-Omar Mohamed, H Kamel Ayman
Chemistry Department, Faculty of Science, Ain Shams University, 11566 Abbasia, Cairo, Egypt.
Pharmaceutical Chemistry Department, Drug Exploration & Development Chair (DEDC), College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.
Polymers (Basel). 2019 Jul 25;11(8):1232. doi: 10.3390/polym11081232.
Molecularly imprinted polymer (MIP) receptors have been synthesized, characterized, and applied as new selective receptors in solid-contact ion selective electrodes (ISEs) towards non-dissociated 3,5-dihydroxytoluene (orcinol). Two monomers, namely methacrylic acid (MAA) and acrylamide (AA), were used in the preparation of MIP receptors. Graphene (Gr) was used as the solid contact material between the sensing membrane and the electrical contact substrate. Based on non-equilibrium sensing mechanism, the proposed sensors reveal observably enhanced detection sensitivity towards orcinol with detection limits 1.7 × 10 and 3.3 × 10 M for sensors based on MIP/MAA and MIP/AA, respectively. The selectivity coefficients measured by the modified separate solution method (MSSM) for the proposed sensors showed good selectivity towards orcinol over most common other phenols and inorganic anions. All measurements were made in the presence of 30 mM phosphate buffer solution (PBS) with a pH of 7.0. Potential stability for the proposed sensors was tested by constant-current chronopotentiometry. No water films were formed between the sensing membrane and the electron conductor substrate. The applicability of MIP/MAA incorporated ISE has been checked by recovery test of orcinol in the presence of soil matrix and by standard addition method.
分子印迹聚合物(MIP)受体已被合成、表征,并作为新型选择性受体应用于固态接触离子选择电极(ISE)中,用于检测未解离的3,5 - 二羟基甲苯(邻苯二酚)。在制备MIP受体时使用了两种单体,即甲基丙烯酸(MAA)和丙烯酰胺(AA)。石墨烯(Gr)用作传感膜与电接触基板之间的固态接触材料。基于非平衡传感机制,所提出的传感器对邻苯二酚显示出明显增强的检测灵敏度,基于MIP/MAA和MIP/AA的传感器的检测限分别为1.7×10和3.3×10 M。通过改进的分别溶液法(MSSM)测量的所提出传感器的选择性系数表明,其对邻苯二酚的选择性优于大多数常见的其他酚类和无机阴离子。所有测量均在pH为7.0的30 mM磷酸盐缓冲溶液(PBS)存在下进行。通过恒流计时电位法测试了所提出传感器的电位稳定性。在传感膜和电子导体基板之间未形成水膜。通过在土壤基质存在下对邻苯二酚的回收率测试和标准加入法,检验了掺入MIP/MAA的ISE的适用性。