Zhu Yanzhuo, Teng Honghui, Sun Dongshu, Jiang Dayu, Yan Yongsheng
Key Laboratory of Preparation and Applications of Environmental Friendly Materials (Jilin Normal University), Ministry of Education Changchun 130103 China
College of Chemistry, Jilin Normal University Siping 136000 China.
RSC Adv. 2019 Oct 29;9(60):34772-34783. doi: 10.1039/c9ra07745f. eCollection 2019 Oct 28.
In this work, a new and simple method was developed for the synthesis of uncovered and high-selectivity spiramycin-based molecularly imprinted microspheres (SP-MIMs) by Pickering emulsion polymerization using spiramycin as templates. And surprisingly the solid particles were absent on the surface of imprinted microspheres, which can be ascribed to the spores (GLS): they were firstly selected to be the stabilizers for the Pickering emulsion in this new strategy. Through a series of adsorption experiments, the uncovered SP-MIMs were proven to possess more excellent selective recognition and removal ability for template SP in aqueous solution. And SP-MIMs could be reused for many times without significant loss of adsorption capacity, indicating the satisfactory regeneration performance. Therefore, SP-MIMs can be employed as a promising adsorbent for the selective removal of SP from aqueous media, and this strategy will contribute to overcoming the shortcomings of stabilizer particles on the surface of the as-prepared imprinting microspheres, because these solid particles lack the special selective recognition activity of template molecules, and may disturb the adsorption effect of imprinting microspheres.
在这项工作中,开发了一种新的简单方法,以螺旋霉素为模板,通过Pickering乳液聚合合成无包覆且高选择性的螺旋霉素基分子印迹微球(SP-MIMs)。令人惊讶的是,印迹微球表面没有固体颗粒,这可以归因于芽孢杆菌(GLS):在这一新策略中,它们首先被选为Pickering乳液的稳定剂。通过一系列吸附实验,证明无包覆的SP-MIMs对水溶液中的模板螺旋霉素具有更优异的选择性识别和去除能力。并且SP-MIMs可以重复使用多次而吸附容量无显著损失,表明其具有令人满意的再生性能。因此,SP-MIMs可作为一种有前景的吸附剂,用于从水介质中选择性去除螺旋霉素,并且该策略将有助于克服所制备的印迹微球表面稳定剂颗粒的缺点,因为这些固体颗粒缺乏模板分子的特殊选择性识别活性,并且可能干扰印迹微球的吸附效果。