Institute for Advanced Interdisciplinary Research, School of Chemistry and Chemical Engineering, University of Jinan, Jinan, 250022, Shandong Province, China.
Qilu University of Technology (Shandong Academy of Sciences), Jinan, 250353, Shandong Province, China.
Mikrochim Acta. 2019 Aug 17;186(9):631. doi: 10.1007/s00604-019-3728-7.
Multimodal nanoporous PtCu flowers (np-PtCu) were prepared via a two-step dealloying strategy under mild conditions. The np-PtCu alloy possesses an interconnected flower-like network skeleton with multiscale pore distribution. This material was placed on a glassy carbon electrode where it shows outstanding detection performance towards hydrogen peroxide and glucose in near-neutral pH solutions. It can be attributed to the specific structure in terms of interconnected nanoscaled ligaments, rich pore openings and a synergistic alloying effect. Figures of merit for detection HO assay include (a) a working voltage of 0.7 V (vs. the reversible hydrogen electrode); (b) a wide linear response range (from 0.01 to 1.7 mM), and (c) a low detection limit (0.1 μM). The respective data for the glucose assay are (a) 0.4 V, (b) 0.01-2.0 mM, and (c) 0.1 μM. The method is not interfered in the presence of common concentrations of dopamine, acetaminophen and ascorbic acid. Graphical abstract Multimodal nanoporous (np) PtCu alloy was prepared via a two-step dealloying strategy under mild conditions. Np-PtCu exhibits superior electrocatalytic activity. The assay is highly sensitive, selective, and it allows for a long-term detection of HO and glucose.
多模态纳米多孔 PtCu 花(np-PtCu)通过两步脱合金策略在温和条件下制备。np-PtCu 合金具有互联的花状网络骨架和多尺度孔分布。将这种材料放置在玻碳电极上,对近中性 pH 溶液中的过氧化氢和葡萄糖表现出优异的检测性能。这归因于其互联的纳米级链节、丰富的孔开口和协同合金化效应的特定结构。检测 HO 分析物的衡量标准包括(a)工作电压为 0.7 V(相对于可逆氢电极);(b)宽线性响应范围(从 0.01 到 1.7 mM);(c)低检测限(0.1 μM)。葡萄糖分析物的相应数据为(a)0.4 V,(b)0.01-2.0 mM,(c)0.1 μM。在存在多巴胺、对乙酰氨基酚和抗坏血酸的常见浓度的情况下,该方法不受干扰。