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Facile and Scalable Preparation of Graphene Oxide-Based Magnetic Hybrids for Fast and Highly Efficient Removal of Organic Dyes

机译:基于氧化石墨烯的磁性混合物的简便可扩展制备,可快速高效去除有机染料

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摘要

This study reports the facile preparation and the dye removal efficiency of nanohybrids composed of graphene oxide (GO) and Fe[subscript 3]O[subscript 4] nanoparticles with various geometrical structures. In comparison to previously reported GO/Fe[subscript 3]O[subscript 4] composites prepared through the one-pot, in situ deposition of Fe[subscript 3]O[subscript 4] nanoparticles, the GO/Fe[subscript 3]O[subscript 4] nanohybrids reported here were obtained by taking advantage of the physical affinities between sulfonated GO and Fe[subscript 3]O[subscript 4] nanoparticles, which allows tuning the dimensions and geometries of Fe3O4 nanoparticles in order to decrease their contact area with GO, while still maintaining the magnetic properties of the nanohybrids for easy separation and adsorbent recycling. Both the as-prepared and regenerated nanohybrids demonstrate a nearly 100% removal rate for methylene blue and an impressively high removal rate for Rhodamine B. This study provides new insights into the facile and controllable industrial scale fabrication of safe and highly efficient GO-based adsorbents for dye or other organic pollutants in a wide range of environmental-related applications.
机译:本研究报道了由具有不同几何结构的氧化石墨烯(GO)和Fe [subscript 3] O [subscript 4]纳米粒子组成的纳米杂化物的制备方法和染料去除效率。与先前报道的通过一锅法原位沉积Fe [下标3] O [下标4]纳米颗粒制备的GO / Fe [下标3] O [下标4]复合材料相比,GO / Fe [下标3] O此处报道的[下标4]纳米杂化物是通过利用磺化GO与Fe [下标3] O [下标4]纳米粒子之间的物理亲合力而获得的,这可以调节Fe3O4纳米粒子的尺寸和几何形状,以减少它们与金属的接触面积。 GO,同时仍保持纳米杂化物的磁性,易于分离和吸附剂循环利用。制备的和再生的纳米杂化物都显示出对亚甲基蓝的去除率接近100%,对若丹明B的去除率也非常高。这项研究为安全,高效的基于GO的吸附剂的简便,可控制的工业规模生产提供了新见解。用于染料或其他有机污染物的广泛环境相关应用。

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