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首页> 外文期刊>RSC Advances >A biomimetic Setaria viridis-inspired imprinted nanoadsorbent: green synthesis and application to the highly selective and fast removal of sulfamethazine
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A biomimetic Setaria viridis-inspired imprinted nanoadsorbent: green synthesis and application to the highly selective and fast removal of sulfamethazine

机译:一种生物素跖象灵感的印迹纳米造纸剂:绿色合成和应用于高选择性和快速除去磺胺甲嘧啶

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Nowadays, it is very necessary to develop high-efficiency nanoadsorbents to remove drug contaminants from wastewater. Inspired by a biomimetic Setaria viridis -like structure, we provide a simple and general approach for the preparation of hydrophilic magnetic surface molecularly imprinted core–shell nanorods (HMMINs) via a two-step surface-initiated atom transfer radical polymerization in a green alcohol/water solvent mixture at room temperature, with magnetic halloysite nanotubes (HNTs, a hollow tubular structured natural clay mineral) used as nano-cores. HMMINs showed a well-defined core–shell structure with an ultra-thin imprinted film (12 nm) and hydrophilic polymer brushes (2–4 nm), where magnetic nanoparticles (11 nm) were uniformly dispersed onto the surface of halloysite nanotubes. HMMINs possess good magnetic properties and thermal stability. Surface grafting of the hydrophilic polymer brushes enhanced the adsorption selectivity and kinetics. HMMINs exhibited a large adsorption capacity (37.64 ± 1.36 μmol g ~(?1) ) and fast kinetics (within 45 min) towards a typical antibiotic drug sulfamethazine (SMZ) from pure water. Adsorption isotherm and kinetics data were well described by the Freundlich isotherm model and pseudo-second-order kinetic equation, respectively. HMMINs displayed good selectivity towards SMZ as compared with other antibiotics, as well as good regeneration performance, providing a potentially practical application in the highly efficient and selective removal of antibiotic contaminants from wastewater.
机译:如今,开发高效纳米坯料是非常必要的,以除去废水中的药物污染物。受到生物摩托车Viridis-like结构的启发,我们通过在绿色醇中的两步表面引发的原子转移自由基聚合,提供一种简单且一般的方法,用于制备亲水性磁性表面分子被分子印迹核 - 壳纳米棒(Hmmins)。在室温下水溶剂混合物,用磁性霍氏石纳米管(HNT,中空管结构化天然粘土矿物)用作纳米芯。 Hmmins展示了具有超薄印迹膜(12nm)和亲水性聚合物刷(2-4nm)的明确定义的核 - 壳结构,其中磁性纳米颗粒(11nm)均匀地分散到霍氏铁矿纳米管的表面上。恒生素具有良好的磁性和热稳定性。亲水性聚合物刷的表面移植增强了吸附选择性和动力学。 Hmmins表现出大吸附能力(37.64±1.36μmolg〜(α1))和快速动力学(45分钟内)朝向纯水的典型抗生素药物磺胺甲嘧啶(SMZ)。通过Freundlich等温模型和伪二阶动力学方程,分别很好地描述了吸附等温线和动力学数据。与其他抗生素相比,HMMINS对SMZ的选择性良好,以及良好的再生性能,在高效和选择性去除废水中的抗生素污染物中提供了潜在的实际应用。

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