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A facile modular approach to the 2D oriented assembly MOF electrode for non-enzymatic sweat biosensors

机译:一个灵巧的2 d面向模块化方法组装MOF电极non-enzymatic汗水生物传感器

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摘要

The preparation of ordered metal organic frameworks (MOFs) will be a critical process for MOF-based nanoelectrodes in the future. In this work, we develop a novel approach to fabricating a type of MOF electrode based on flexible amino-functionalized graphene paper modified with 2D oriented assembly of Cu-3(btc)(2) nanocubes via facile interfacial synthesis and an effective dip-coating method. One interesting finding is that 2D arrays of Cu-3(btc)(2) nanocubes at oil-water interfaces can be transferred on amino-functionalized graphene paper, leading to a densely packed monolayer of Cu-3(btc)(2) nanocubes with a uniform size loaded on the paper electrode. The electrode demonstrates a variety of excellent sensing performances toward sweat lactate and glucose and has been applied in a non-enzymatic electrochemical biosensing platform for the first time. The modular nature of this approach to assembling MOF nanocrystals will provide new insight into the design of MOF-based electrodes for a wide range of applications in biosensing instruments, wearable electronics, and lab-on-a-chip devices.
机译:制备的有序金属有机框架(mof)将是一个关键的过程基于mof nanoelectrodes在未来。工作中,我们开发一种新型的制造方法一种基于灵活MOF电极amino-functionalized石墨烯纸与修改2 d面向装配Cu-3 (btc) (2) nanocubes通过简单界面合成和有效的浸涂的方法。二维数组的Cu-3 (btc) (2) nanocubes油水界面可以被转移amino-functionalized石墨烯纸,导致密集的单层Cu-3 (btc) (2)nanocubes大小不均匀加载在纸上电极。优秀的传感性能对汗水乳酸和葡萄糖和应用non-enzymatic电化学若平台第一次。组装方法MOF纳米晶体基于mof的设计提供新的见解电极的广泛应用若仪器,可穿戴电子产品芯片实验室设备。

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