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Hierarchical Porous Graphene–Iron Carbide Hybrid Derived From Functionalized Graphene-Based Metal–Organic Gel as Efficient Electrochemical Dopamine Sensor

机译:衍生自官能化石墨烯基金属 - 有机凝胶的等级多孔石墨铁作为高效电化学多巴胺传感器

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摘要

A metal–organic gel (MOG) similar in constitution to MIL-100 (Fe) but containing a lower connectivity ligand (5-aminoisophthalate) was integrated with an isophthalate functionalized graphene (IG). The IG acted as a structure-directing templating agent, which also induced conductivity of the material. The MOG@IG was pyrolyzed at 600°C to obtain MGH-600, a hybrid of Fe/Fe3C/FeOx enveloped by graphene. MGH-600 shows a hierarchical pore structure, with micropores of 1.1 nm and a mesopore distribution between 2 and 6 nm, and Brunauer–Emmett–Teller surface area amounts to 216 m2/g. Furthermore, the MGH-600 composite displays magnetic properties, with bulk saturation magnetization value of 130 emu/g at room temperature. The material coated on glassy carbon electrode can distinguish between molecules with the same oxidation potential, such as dopamine in presence of ascorbic acid and revealed a satisfactory limit of detection and limit of quantification (4.39 × 10−7 and 1.33 × 10−6 M, respectively) for the neurotransmitter dopamine.
机译:一种金属 - 有机凝胶(MOG)在结构类似于MIL-100(Fe)的但含有低级连通配体(5-氨基间苯二甲酸)与间苯二甲酸酯官能化石墨烯(IG)被整合。所述IG充当结构导向模板剂,这也引起该材料的导电性。在MOG @ IG在600℃下热分解,得到MGH-600,铁/碳化铁/的FeOx的混合笼罩由石墨烯。 MGH-600示出了分层的孔结构,以1.1纳米微孔和2和6纳米之间的孔分布,以及至216平方米/克布鲁诺尔 - 埃米特 - 特勒表面积量。此外,MGH-600复合显示器的磁特性,用鸸鹋/ g的在室温下的130散装饱和磁化值。涂布在玻碳电极的材料可以分子之间具有相同的氧化电势和区分,例如在抗坏血酸存在多巴胺揭示检测和定量限(4.39×10-7和1.33×10 -6 M的令人满意的限制,分别)为神经递质多巴胺。

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