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首页> 外文期刊>RSC Advances >Preparation of dithiocarbamate polymer brush grafted nanocomposites for rapid and enhanced capture of heavy metal ions
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Preparation of dithiocarbamate polymer brush grafted nanocomposites for rapid and enhanced capture of heavy metal ions

机译:二硫代氨基甲酸酯聚合物刷接枝纳米复合材料的制备,用于快速,增强对重金属离子的捕获

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摘要

High-density and narrow-distribution dithiocarbamate (DTC) functionalized polymer brush grafted SiO2 nanocomposites (DTC-PGMA@SiO2) were synthesized via surface initiated atom transfer radical polymerization (SI-ATRP) and subsequent DTC functionalization, which could serve as an efficient nanostructured adsorbent material. Systematic characterization was performed to identify the sea anemone like core-brush structure. More importantly, the DTC-PGMA@SiO2 adsorbent exhibited remarkable performance in capturing heavy metal ions from water. The adsorption behaviour, including the effect of pH, adsorption kinetics, adsorption isotherms, adsorption thermodynamics and adsorption mechanism, was investigated in detail. Interestingly, the adsorbent complexes show different color changes depending upon the species of adsorbed ions, indicating that the DTC-PGMA@SiO2 can be potentially used as a sensor for metallic contaminants in water bodies. The regeneration experiments showed that the adsorbent is both cost-effective and sustainable. The high-capacity and rapid adsorption of metallic ions, which are due to the well-defined core-brush structure, large specific surface area and strong binding ability of DTC groups, make this adsorbent material promising in the capture of heavy metal ions from contaminated water.
机译:高密度窄分布二硫代氨基甲酸酯(DTC)功能化聚合物刷接枝SiO 2 纳米复合材料(DTC-PGMA @ SiO 2 <通过表面引发的原子转移自由基聚合(SI-ATRP)和随后的DTC功能化来合成 ,可以用作有效的纳米结构吸附材料。进行了系统表征,以识别像海葵刷一样的海葵。更重要的是,DTC-PGMA @ SiO 2 吸附剂在从水中捕获重金属离子方面表现出卓越的性能。详细研究了吸附行为,包括pH的影响,吸附动力学,吸附等温线,吸附热力学和吸附机理。有趣的是,根据所吸附离子的种类,吸附剂络合物显示出不同的颜色变化,表明DTC-PGMA @ SiO 2 可以潜在地用作金属污染物的传感器。在水体中。再生实验表明,该吸附剂既具有成本效益,又具有可持续性。金属离子的高容量和快速吸附,归因于明确的芯刷结构,大比表面积和DTC基团的强大结合能力,使这种吸附材料有望从被污染的污染物中捕获重金属离子。水。

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