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氧化石墨烯(RGO)/Fe3O4纳米复合材料的一锅法绿色合成及其对亚甲基蓝染料降解的催化活性。

One-pot green synthesis of reduced graphene oxide (RGO)/Fe3O4 nanocomposites and its catalytic activity toward methylene blue dye degradation.

作者信息

Vinothkannan M, Karthikeyan C, Gnana kumar G, Kim Ae Rhan, Yoo Dong Jin

机构信息

Department of Physical Chemistry, School of Chemistry, Madurai Kamaraj University, Madurai-625-021, Tamilnadu, India.

Department of Physical Chemistry, School of Chemistry, Madurai Kamaraj University, Madurai-625-021, Tamilnadu, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2015 Feb 5;136 Pt B:256-64. doi: 10.1016/j.saa.2014.09.031. Epub 2014 Sep 22.

Abstract

The reduced graphene oxide (RGO)/Fe3O4 nanocomposites were synthesized through a facile one-pot green synthesis by using solanum trilobatum extract as a reducing agent. Spherical shaped Fe3O4 nanoparticles with the diameter of 18 nm were uniformly anchored over the RGO matrix and the existence of fcc structured Fe3O4 nanoparticles over the RGO matrix was ensured from X-ray diffraction patterns. The amide functional groups exist in the solanum trilobatum extract is directly responsible for the reduction of Fe(3+) ions and GO. The thermal stability of GO was increased by the removal of hydrophilic functional groups via solanum trilobatum extract and was further promoted by the ceramic Fe3O4 nanoparticles. The ID/IG ratio of RGO/Fe3O4 was increased over GO, indicating the extended number of structural defects and disorders in the RGO/Fe3O4 composite. The catalytic efficiency of prepared nanostructures toward methylene blue (MB) dye degradation mediated through the electron transfer process of BH4(-) ions was studied in detail. The π-π stacking, hydrogen bonding and electrostatic interaction exerted between the RGO/Fe3O4 composite and methylene blue, increased the adsorption efficiency of dye molecules and the large surface area and extended number of active sites completely degraded the MB dye within 12 min.

摘要

通过使用刺天茄提取物作为还原剂,采用简便的一锅法绿色合成制备了还原氧化石墨烯(RGO)/Fe3O4纳米复合材料。直径为18 nm的球形Fe3O4纳米颗粒均匀地锚定在RGO基体上,X射线衍射图谱证实了RGO基体上存在面心立方结构的Fe3O4纳米颗粒。刺天茄提取物中存在的酰胺官能团直接负责Fe(3+)离子和氧化石墨烯的还原。通过刺天茄提取物去除亲水性官能团提高了氧化石墨烯的热稳定性,陶瓷Fe3O4纳米颗粒进一步促进了其热稳定性。RGO/Fe3O4的ID/IG比值高于氧化石墨烯,表明RGO/Fe3O4复合材料中结构缺陷和无序的数量增加。详细研究了制备的纳米结构通过BH4(-)离子的电子转移过程对亚甲基蓝(MB)染料降解的催化效率。RGO/Fe3O4复合材料与亚甲基蓝之间存在的π-π堆积、氢键和静电相互作用提高了染料分子的吸附效率,大表面积和大量活性位点在12分钟内完全降解了MB染料。

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