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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Coating silver metal-organic frameworks onto nitrogen-doped porous carbons for the electrochemical sensing of cysteine
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Coating silver metal-organic frameworks onto nitrogen-doped porous carbons for the electrochemical sensing of cysteine

机译:将银金属 - 有机框架涂在氮掺杂多孔碳上,用于半胱氨酸的电化学传感

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摘要

Nitrogen-doped porous carbons (N-PC) were coated for the first time with silver metal-organic frameworks (Ag-MOF) by the hydrothermal route. The resulted N-PC@Ag-MOF composites present high stability because of the strong interaction between N atoms of N-PC and Ag(+)ions of Ag-MOF. It was discovered that the electrodes modified with N-PC@Ag-MOF composites display much higher conductivity than the one modified with Ag-MOF. Especially, they provide stable and sharp electrochemical signals of solid-state AgBr at a low potential approaching zero (i.e., 0.02 V), which may aid to overcome the drawback of the traditional electroanalysis at high overpotentials with serious interferences from the samples background. More importantly, the yielded AgBr signals selectively decrease induced by cysteine (Cys) through the specific thiol-bromine replacement reactions that transfer AgBr into non-electroactive Ag-Cys. The proposed method facilitates the selective detection of Cys with two linear working ranges of 0.10 to 100 mu M and 100 to 1300 mu M, respectively. The N-PC@Ag-MOF-based sensors have been used for detection of spiked Cys in milk samples with good recovery efficiencies. The developed electroanalysis strategy for probing Cys through the specific thiol-bromine replacement has potential applications in the food analysis fields.
机译:通过水热途径与银金属 - 有机骨架(Ag-Mof)首次涂覆氮掺杂的多孔碳(N-PC)。得到的N-PC @ Ag-MOF复合材料具有高稳定性,因为N-PC和Ag(+)离子的N原子与Ag-MOF的N原子之间的强相互作用。被发现用N-PC @ AG-MOF复合材料改性的电极显示比用AG-MOF改性的电导率更高。特别是,它们以低电位接近零(即0.02V)提供固态AgBR的稳定和尖锐的电化学信号,这可能有助于克服高度过电分析的传统电催化的缺点,其具有来自样品背景的严重干扰。更重要的是,所产生的AgBR信号通过将AgBR转移到非电活性Ag-Cys中的特定硫醇 - 溴置换反应选择性地减少半胱氨酸(Cys)。所提出的方法有助于分别选择性地检测两种线性工作范围0.10至100μm和100至1300μm。基于N-PC @ AG-MOF的传感器已被用于检测牛奶样品中的尖刺CYS,具有良好的恢复效率。通过特定硫醇 - 溴替换探测Cys的开发的电灭菌策略具有食物分析领域的潜在应用。

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