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Multifunctional magnetic Fe_3O_4itrogen-doped porous carbon nanocomposites for removal of dyes and sensing applications

机译:多功能磁性Fe_3O_4 /氮掺杂多孔碳纳米复合材料用于染料的去除和传感应用

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In this work, a multifunctional magnetic Fe3O4itrogen doped-porous carbon nanocomposite (Fe3O4/N-PCNC) with remarkable magnetic, adsorption and catalytic properties was synthesized using naringin as carbon precursor. Characterization studies revealed that Fe3O4/N-PCNC exhibited a mesoporous structure with different functional groups and good magnetic properties. Its applications for the removal of organic dyes as well as the non-enzymatic colorimetric detection of hydrogen peroxide and glucose were investigated. The removal of the organic dyes from water showed that over 99.7% crystal violet and rhodamine B, and 100% thionine with concentrations of ca. 60 mg/L can be removed by Fe3O4/N-PCNC within 15 min. Recovery and recycling studies showed that, after 5 cycles, Fe3O4/N-PCNC, lost only around 2.94%, 3.97% and 3.36% of its initial ability to remove crystal violet, rhodamine B and thionine, respectively. Furthermore, Fe3O4/N-PCNC exhibited intrinsic peroxidase-mimic activity. Fe3O4/N-PCNC was used for colorimetric sensing of hydrogen peroxide and glucose with high sensitivity and low limits of detection of 0.1 mu M and 2.6 mu M respectively. The glucose sensor also shows high reproducibility, selectivity and was successfully applied to sense glucose in various drinks. This indicates the promising application potential of Fe3O4/N-PCNC in water treatment, quality analysis and medicine fields.
机译:在这项工作中,以柚皮苷为碳前驱体,合成了具有显着磁性,吸附和催化性能的多功能磁性Fe3O4 /氮掺杂多孔碳纳米复合材料(Fe3O4 / N-PCNC)。表征研究表明,Fe3O4 / N-PCNC表现出具有不同官能团和良好磁性能的介孔结构。研究了其在去除有机染料以及过氧化氢和葡萄糖的非酶比色检测中的应用。从水中去除有机染料后,发现约99.7%的结晶紫和若丹明B,以及100%的硫氨酸浓度约为50%。 Fe3O4 / N-PCNC可以在15分钟内除去60 mg / L。回收和再循环研究表明,经过5个循环后,Fe3O4 / N-PCNC分别失去了其最初的去除结晶紫,若丹明B和硫氨酸的能力的约2.94%,3.97%和3.36%。此外,Fe3O4 / N-PCNC表现出固有的过氧化物酶模拟活性。 Fe3O4 / N-PCNC用于过氧化氢和葡萄糖的比色检测,灵敏度高,检出限低,分别为0.1μM和2.6μM。葡萄糖传感器还显示出高重现性,选择性,并已成功应用于感测各种饮料中的葡萄糖。这表明Fe3O4 / N-PCNC在水处理,质量分析和医药领域中具有广阔的应用前景。

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