首页> 外文期刊>ACS applied materials & interfaces >Mesostructured Nanomagnetic Polyhedral Oligomeric Silsesquioxanes (POSS) Incorporated with Dithiol Organic Anchors for Multiple Pollutants Capturing in Wastewater
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Mesostructured Nanomagnetic Polyhedral Oligomeric Silsesquioxanes (POSS) Incorporated with Dithiol Organic Anchors for Multiple Pollutants Capturing in Wastewater

机译:介孔结构的纳米磁性多面体低聚倍半硅氧烷(POSS)与二硫醇有机锚结合,可捕获废水中的多种污染物

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摘要

A functionalizable organosiliceous hybrid magnetic material was facilely constructed by surface polymerization of octavinyl polyhedral oligomeric silsesquioxane (POSS) on the Fe3O4 nanoparticles. The resultant Fe3O4@ POSS was identified as a mesoporous architecture with an average particle diameter of 20 nm and high specific surface area up to 653.59 m~2 g~(-1). After it was tethered with an organic chain containing dithiol via thiol—ene addition reaction, the ultimate material (Fe3O4@POSS-SH) still have moderate specific area (224.20 m~2 g~(-1)) with almost identical porous morphology. It turns out to be a convenient, efficient single adsorbent for simultaneous elimination of inorganic heavy metal ions and organic dyes in simulate multicomponent wastewater at ambient temperature. The Fe3O4@POSS-SH nanoparticles can be readily withdrawn from aqueous solutions within a few seconds under moderate magnetic field and exhibit good stability in strong acid and alkaline aqueous matrices. Contaminants-loaded Fe3O4@POSS-SH can be easily regenerated with either methanol—acetic acid (for organic dyes) or hydrochloric acid (for heavy metal ions) under ultrasonication. The renewed one keeps appreciable adsorption capability toward both heavy metal ions and organic dyes, the removal rate for any of the pollutants exceeds 92% to simulate wastewater with multiple pollutants after repeated use for 5 cycles. Beyond the environmental remediation function, thanks to the pendant vinyl groups, the Fe3O4@POSS derived materials rationally integrating distinct or versatile functions could be envisaged and consequently a wide variety of applications may emerge.
机译:通过在Fe3O4纳米颗粒上进行八乙烯基多面体低聚倍半硅氧烷(POSS)的表面聚合,可轻松构建可功能化的有机硅质杂化磁性材料。所得的Fe3O4 @ POSS被鉴定为中孔结构,平均粒径为20 nm,高比表面积高达653.59 m〜2 g〜(-1)。通过硫醇-烯加成反应将其与含有二硫醇的有机链束缚后,最终材料(Fe3O4 @ POSS-SH)仍然具有中等比表面积(224.20 m〜2 g〜(-1)),几乎具有相同的多孔形态。事实证明,这是一种方便高效的单一吸附剂,可在环境温度下同时消除模拟多组分废水中的无机重金属离子和有机染料。 Fe3O4 @ POSS-SH纳米粒子可以在中等磁场下几秒钟内轻松地从水溶液中抽出,并且在强酸和强碱水溶液中表现出良好的稳定性。负载有污染物的Fe3O4 @ POSS-SH可以在超声波作用下轻松地用甲醇-乙酸(对于有机染料)或盐酸(对于重金属离子)进行再生。更新后的产品对重金属离子和有机染料均具有明显的吸附能力,任何污染物的去除率均超过92%,可在重复使用5次循环后模拟多种污染物的废水。除了环境修复功能之外,由于乙烯基侧基的存在,可以设想到Fe3O4 @ POSS衍生的材料合理地整合了独特的或通用的功能,因此可能出现各种各样的应用。

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