首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Direct growth of metal-organic frameworks thin film arrays on glassy carbon electrode based on rapid conversion step mediated by copper clusters and hydroxide nanotubes for fabrication of a high performance non-enzymatic glucose sensing platform
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Direct growth of metal-organic frameworks thin film arrays on glassy carbon electrode based on rapid conversion step mediated by copper clusters and hydroxide nanotubes for fabrication of a high performance non-enzymatic glucose sensing platform

机译:基于铜簇和氢氧化物纳米管介导的快速转化步骤,直接生长金属有机框架薄膜阵列玻璃碳电极,铜簇和氢氧化物纳米管制备高性能非酶促葡萄糖传感平台

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摘要

The direct growth of self-supported metal-organic frameworks (MOFs) thin film can be considered as an effective strategy for fabrication of the advanced modified electrodes in sensors and biosensor applications. However, most of the fabricated MOFs-based sensors suffer from some drawbacks such as time consuming for synthesis of MOF and electrode making, need of a binder or an additive layer, need of expensive equipment and use of hazardous solvents. Here, a novel free-standing MOFs-based modified electrode was fabricated by the rapid direct growth of MOFs on the surface of the glassy carbon electrode (GCE). In this method, direct growth of MOFs was occurred by the formation of vertically aligned arrays of Cu clusters and Cu(OH)(2) nanotubes, which can act as both mediator and positioning fixing factor for the rapid formation of self-supported MOFs on GCE surface. The effect of both chemically and electrochemically formed Cu(OH)(2) nanotubes on the morphological and electrochemical performance of the prepared MOFs were investigated. Due to the unique properties of the prepared MOFs thin film electrode such as uniform and vertically aligned structure, excellent stability, high electroactive surface area, and good availability to analyte and electrolyte diffusion, it was directly used as the electrode material for non-enzymatic electrocatalytic oxidation of glucose. Moreover, the potential utility of this sensing platform for the analytical determination of glucose concentration was evaluated by the amperometry technique. The results proved that the self-supported MOFs thin film on GCE is a promising electrode material for fabricating and designing non-enzymatic glucose sensors.
机译:自支撑金属 - 有机框架(MOF)薄膜的直接生长可以被认为是制造传感器和生物传感器应用中的先进修饰电极的有效策略。然而,大多数由制造的MOFS的传感器患有一些缺点,例如用于合成MOF和电极制造的耗时,需要粘合剂或添加剂层,需要昂贵的设备和危险溶剂的使用。这里,通过玻璃碳电极(GCE)表面上的MOF的快速直接生长来制造新的独立式MOF基改性电极。在该方法中,通过形成垂直对准的Cu簇和Cu(OH)(2)纳米管阵列的直接生长,这可以充当介质和定位固定因子,以便快速形成自支撑的MOF GCE表面。研究了化学和电化学形成的Cu(OH)(2)纳米管对制备的MOF的形态学和电化学性能的影响。由于制备的MOFS薄膜电极如均匀和垂直对齐的结构,优异的稳定性,高电活性表面积和对分析物和电解质扩散的良好可用性,因此是由于用于非酶促电催化的电极材料葡萄糖的氧化。此外,通过电流测定技术评估了用于分析葡萄糖浓度的分析测定的传感平台的潜在效用。结果证明了GCE上的自支撑的MOFS薄膜是用于制造和设计非酶促葡萄糖传感器的有前途的电极材料。

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