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Functionalization of graphene with Prussian blue and its application for amperometric sensing of H2O2

机译:普鲁士蓝对石墨烯的功能化及其在H 2 O 2 的安培感测中的应用

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摘要

As a two-dimensional carbon material with high surface area and conductivity, graphene shows great promise for designing composite nanomaterials to achieve high-performance electrochemical devices. In this work, we prepared graphene-based nanocomposite material by electrochemically depositing Prussian blue (PB) nanoparticles on the surface of graphene. Fourier transform infrared spectra, SEM, and cyclic voltammetry were used to characterize the successful immobilization of PB. Compared with PB films and graphene sheets, the PB–graphene composite films showed the largest current response to the reduction of H2O2, probably due to the synergistic effects between graphene sheets and PB nanoparticles. Therefore, a fast and highly sensitive amperometric sensor for H2O2 was obtained with a detection sensitivity of 1.6 μA μM−1 H2O2 per cm2 and a linear response range of 50∼5,000 μM. The detection limit of H2O2 was 20 nM at a signal-to-noise ratio of 3. These obtained results are much better than those reported for carbon nanotubes-based amperometric sensors.
机译:作为具有高表面积和导电性的二维碳材料,石墨烯在设计复合纳米材料以实现高性能电化学装置方面显示出巨大的希望。在这项工作中,我们通过在石墨烯的表面上电化学沉积普鲁士蓝(PB)纳米颗粒来制备基于石墨烯的纳米复合材料。用傅立叶变换红外光谱,SEM和循环伏安法表征了PB的成功固定。与PB薄膜和石墨烯片相比,PB-石墨烯复合薄膜对H 2 O 2 的还原表现出最大的电流响应,这可能是由于石墨烯之间的协同作用床单和PB纳米颗粒。因此,获得了一种快速灵敏的H 2 O 2 安培传感器,其检测灵敏度为1.6μAμM -1 H O 2 ,线性响应范围为50〜5,000μM。 H 2 O 2 的检出限为20 nM,信噪比为3。这些获得的结果比基于碳纳米管的报告的要好得多。安培传感器。

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