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One-step formation of a hybrid material of graphene and porous Ni with highly active Ni(OH)(2) used for glucose detection

机译:具有用于葡萄糖检测的高活性Ni(OH)(2)的石墨烯和多孔Ni的一步形成杂种材料

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摘要

A hybrid material of graphene and porous Ni with highly active Ni(OH)(2) was formed through a one-step electrochemical exfoliation assisted method. The porous Ni with a pore size of 2-10 micrometers obtained by a hydrogen bubble template method was used as the cathode while the graphite foil was used as the anode with only (NH4)(2)SO4 as the electrolyte. Both the high surface areas of porous Ni and the oxygen radicals in graphene favored the formation of the Ni(OH)(2). It is confirmed by energy dispersion spectrum, transmission electron microscope, Raman spectroscopy, x-ray diffraction and x-ray photoelectron spectroscopy analysis. Both the active area and the glucose sensing property of the as-prepared hybrid material were estimated by electrochemical methods of cyclic voltammetry with current-voltage (C-V) curve, chronoamperometry with current-time (I-t) curve and electrochemical impedance spectroscopy analysis, respectively. It shows an extraordinary active area as well as a low charge transfer resistance and absorption resistance. As a result, a high sensitivity of 6504 mu A/mM(-1) cm(-2) within a linear range of 4 mu M-1.0mM was obtained for glucose detection.
机译:通过一步电化学剥离辅助方法形成具有高活性Ni(OH)(2)的石墨烯和多孔Ni的杂化材料。使用孔径为2-10微米的多孔Ni通过氢气泡模板法得到的,用作阴极,而石墨箔用作仅具有(NH 4)(2)SO 4的阳极作为电解质。多孔Ni的高表面积和石墨烯中的氧自由基赞成Ni(OH)(2)的形成。它是通过能量分散频谱,透射电子显微镜,拉曼光谱,X射线衍射和X射线光电子能谱分析的确认。通过具有电流 - 电压(C-V)曲线的循环伏安法的电化学方法估计了AS制备的混合材料的有源区和葡萄糖传感性能,分别具有电流 - 时间(I-T)曲线和电化学阻抗光谱分析的计时率。它显示出非凡的有源区以及低电荷传递电阻和吸收阻力。结果,获得了在4μm-1.0mm的线性范围内的6504μA/ mm(-1)cm(-2)的高灵敏度用于葡萄糖检测。

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