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Magnetic Fe_3O_4-reduced graphene oxide composite decorated with Ag nanoparticles as electrochemical sensor and self-cleaning material for organic pollutants

机译:Ag纳米粒子修饰的磁性Fe_3O_4还原氧化石墨烯复合材料作为电化学传感器和有机污染物的自清洁材料

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摘要

The successful synthesis of silver incorporated Fe3O4-rGO ternary nanocomposite for the accurate detection of toxic phenolic isomeric compounds by electrochemical sensing along with self-cleaning ability of photo degradation of the organic dirts is described in this paper. The salient feature of this work is the high sensitivity of the synthesized sensor up to the nanomolar level. The detection limit of the phenolic isomeric compounds such as hydroquinone and catechol are found to be 37.5 nM and 335.4 nM respectively. The synthesized nanohybrid possessing large surface area and mesoporosity also aims to the effective photodegradation of various industrial acidic and basic dyes which may impair electrochemical sensing nature. The photo degradation capacity of the ternary composite was studied and found that a high reduction percentage of above 95 is obtained for these toxic industrial dyes. The dual applications of the ternary nanohybrid as an efficient electrochemical sensor with better photocatalytic self-cleaning property opened a new platform in the various analytical and industrial fields.
机译:本文介绍了成功地合成了掺银的Fe3O4-rGO三元纳米复合材料,用于通过电化学传感准确检测有毒酚类异构体化合物以及有机污物的光降解自清洁能力。这项工作的显着特点是合成传感器的高灵敏度达到纳摩尔水平。发现酚对映体化合物(如对苯二酚和邻苯二酚)的检出限分别为37.5 nM和335.4 nM。合成的具有大的表面积和介孔性的纳米杂交体还旨在有效降解各种可能损害电化学传感性质的工业酸性和碱性染料。研究了三元复合材料的光降解能力,发现这些有毒工业染料的还原率高达95以上。三元纳米杂交体作为具有更好的光催化自清洁性能的高效电化学传感器的双重应用为各种分析和工业领域开辟了一个新平台。

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