Institute of Medicine and Materials Applied Technologies, College of Chemistry and Chemical Engineering, Qufu Normal University , Qufu City, Shandong Province 273165, People's Republic of China.
Anal Chem. 2017 Sep 5;89(17):9552-9558. doi: 10.1021/acs.analchem.7b02619. Epub 2017 Aug 21.
Mesoporous silver-melamine (Ag-MA) nanocomposites were synthesized simply by the controlled supermolecular self-assembly process to be modified onto the electrodes for the electroanalysis of multiple sulfides in blood or wastewater. It was discovered that Ag-MA nanocomposites could be prepared with various morphological structures depending on the Ag-to-MA ratios. Furthermore, the electrodes modified with mesoporous Ag-MA nanowires could display stable and sharp electrochemical peaks of solid-state AgCl at a considerably low potential approaching zero, thus circumventing any interference from possibly coexisting electroactive substances in the background. More importantly, the yielded AgCl signals would decrease selectively induced by sulfides through the specific sulfide-chloride replacement reactions toward the transferring of AgCl into non-electroactive AgS. The developed electroanalysis strategy could facilitate the selective detection of multiple sulfides (i.e., S or HS, S, cysteine, and SO) in the complicated media with high-level salts such as blood and wastewater, showing a linear concentration range from 0.50 to 512 μM as exemplified for S ions in blood. Such an electroanalysis device equipped with the portable electrochemical transducer can be tailored for the field-deployable monitoring of a variety of sulfides in clinical and environmental analysis fields.
介孔银-三聚氰胺(Ag-MA)纳米复合材料通过控制超分子自组装过程简单合成,用于修饰电极以分析血液或废水中的多种硫化物。研究发现,Ag-MA 纳米复合材料可以根据 Ag 与 MA 的比例制备出各种形态结构。此外,修饰有介孔 Ag-MA 纳米线的电极可以在相当低的接近零的电位下显示固态 AgCl 的稳定而尖锐的电化学峰,从而避免背景中可能存在的共存电活性物质的任何干扰。更重要的是,产生的 AgCl 信号会通过特定的硫化物-氯化物取代反应选择性地减少,从而将 AgCl 转化为非电活性的 AgS。所开发的电分析策略可以促进在高盐度(如血液和废水)等复杂介质中对多种硫化物(即 S 或 HS、S、半胱氨酸和 SO)的选择性检测,例如血液中 S 离子的线性浓度范围为 0.50 至 512 μM。这种配备便携式电化学传感器的电分析装置可以针对临床和环境分析领域中各种硫化物的现场可部署监测进行定制。