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用于选择性识别和分离的双重印迹混合基质膜:基于复合引发体系的协同印迹策略。

Dual-imprinted mixed matrix membranes for selective recognition and separation: A synergetic imprinting strategy based on complex initiation system.

机构信息

Institute of Green Chemistry and Chemical Technology, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.

Institute of Green Chemistry and Chemical Technology, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.

出版信息

J Colloid Interface Sci. 2022 Jan 15;606(Pt 1):87-100. doi: 10.1016/j.jcis.2021.07.153. Epub 2021 Aug 2.

Abstract

Molecularly imprinted membranes (MIMs) with sufficient and even-distributed recognition sites that can break the permeability-selectivity trade-off phenomenon are desirable in chemical field of selective separation. Herein graphene oxide (GO)/TiO-loaded nanocomposite fibrous membranes were prepared by developing two kinds of tetracycline (TC)-imprinted systems in the same MIMs-based material. Thereinto, polydopamine-based and sol-gel-based imprinting processes were applied to the synthesis of GO/TiO-loaded dual-imprinted mixed matrix membranes (GT-DIMs). The as-prepared GT-DIMs encompassed innovative GO/TiO-based nanocomposite fibrous channels and two kinds of TC-imprinted systems, and critical comparisons regarding the fluxes, rebinding capacities and permselectivity were provided and studied. Importantly, dual-imprinted system of GT-DIMs could not only allow for largely enhanced rebinding result (70.63 mg/g) and fast adsorption equilibrium rate within 30 min, but also facilitate the high permselectivity of TC in complex separation systems and lab-simulated wastewater samples. The permselectivity factors were all around 5.0, which strongly demonstrated the efficiently selective recognition and separation performance of GT-DIMs. Overall, based on testing results of practical separation and scalability, excellent structural stability and separation continuity had been successfully obtained for selective separation applications of pollutants.

摘要

在化学选择性分离领域中,人们希望获得具有足够且均匀分布的识别位点的分子印迹膜(MIMs),以打破渗透率-选择性权衡现象。本文通过在同一 MIMs 基材料中开发两种四环素(TC)印迹体系,制备了氧化石墨烯(GO)/TiO2负载纳米复合纤维膜。其中,采用聚多巴胺基和溶胶-凝胶基印迹工艺合成了 GO/TiO2负载双印迹混合基质膜(GT-DIMs)。所制备的 GT-DIMs 包含了创新性的 GO/TiO2基纳米复合纤维通道和两种 TC 印迹体系,并对通量、再结合能力和分离选择性进行了对比研究。重要的是,GT-DIMs 的双印迹体系不仅可以显著提高再结合效果(70.63mg/g)和 30min 内的吸附平衡速率,而且可以提高 TC 在复杂分离体系和实验室模拟废水中的高分离选择性。选择性因子均在 5.0 左右,这充分证明了 GT-DIMs 的高效选择性识别和分离性能。总的来说,基于实际分离和可扩展性的测试结果,成功获得了用于污染物选择性分离应用的良好结构稳定性和分离连续性。

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