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Surface engineering of nickel selenide nanosheets array on nickel foam: An integrated anode for glucose sensing

机译:镍泡沫上硒化镍纳米片阵列的表面工程:用于葡萄糖传感的集成阳极

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Nickel selenides (Ni3Se2), which boast a narrow band gap and high conductivity, have gained widespread attention for their potential use in water electrolysis sytems and dye-sensitized solar cells. We report herein the in situ fabrication of nickel selenide nanosheet arrays on nickel (Ni) foam (Ni3Se2 NS/NF) and their use in an integrated, non-enzymatic glucose sensor. Ni3Se2 NS/NF anodes exhibited a high rate of electrocatalytic glucose oxidation, attaining a sensitivity of 5962 mu A mM(-1) cm(-2), a linear range from 0.25 mu M to 6.335 mM, a limit of detection (LOD) of 0.04 mu M, and good selectivity. The excellent sensing properties of these anodes are attributed to their high catalytic activity and conductivity, afforded by synergistic interations between Ni3Se2 and Ni, and the large surface area and easy access to electrolytes provided by the open-shelled nanoarray configuration and 3D Ni foam skeleton.
机译:硒化镍(Ni3Se2)具有窄的带隙和高导电性,因其在水电解系统和染料敏化太阳能电池中的潜在用途而受到广泛关注。我们在这里报告镍(Ni)泡沫(Ni3Se2 NS / NF)上硒化镍纳米片阵列的原位制造及其在集成的非酶葡萄糖传感器中的使用。 Ni3Se2 NS / NF阳极表现出较高的电催化葡萄糖氧化速率,灵敏度为5962μAmM(-1)cm(-2),线性范围为0.25μM至6.335mM,检测极限(LOD)为0.04μM,选择性好。这些阳极的出色传感性能归因于其高催化活性和电导率,这是由Ni3Se2和Ni之间的协同相互作用提供的,并且具有大的表面积,并易于使用开壳纳米阵列结构和3D Ni泡沫骨架提供的电解质。

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