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An ion-selective crown ether covalently grafted onto chemically exfoliated MoS2 as a biological fluid sensor

机译:一个离子选择性冠醚共价接枝二硫化钼作为生物化学上剥落了流体传感器

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We describe the basal plane functionalization of chemically exfoliated molybdenum disulfide (ce-MoS2) nanosheets with a benzo-15-crown-5 ether (B15C5), promoted by the chemistry of diazonium salts en route to the fabrication and electrochemical assessment of an ion-responsive electrode. The success of the chemical modification of ce-MoS2 nanosheets was investigated by infrared and Raman spectroscopy, and the amount of the incorporated crown ether was estimated by thermogravimetric analysis. Raman spatial mapping at on-resonance excitation allowed us to disclose the structural characteristics of the functionalized B15C5-MoS2 nanosheets and the impact of basal plane functionalization to the stabilization of the 1T phase of ce-MoS2. Morphological investigation of the B15C5-MoS2 hybrid was implemented by atomic force microscopy and high-resolution transmission electron microscopy. Furthermore, fast-Fourier-transform analysis and in situ energy dispersive X-ray spectroscopy revealed the crystal lattice of the modified nanosheets and the presence of crown-ether addends, respectively. Finally, B15C5-MoS2 electrodes were constructed and evaluated as ion-selective electrodes for sodium ions in aqueous solution and an artificial sweat matrix.
机译:我们描述了基底平面的功能化化学剥落了二硫化钼(ce-MoS2) nanosheets benzo-15-crown-5醚(B15C5),促进了化学的重氮盐制造和途中电化学ion-responsive的评估电极。修改ce-MoS2 nanosheets研究了红外和拉曼光谱,和合并冠醚的数量被热重量分析估计。在讨论共振激发拉曼空间映射允许我们披露的结构功能化B15C5-MoS2的特性nanosheets和基底平面的影响功能化的稳定1 tce-MoS2阶段。B15C5-MoS2混合是由原子实现力显微镜和高分辨率的传播电子显微镜。快速傅里叶变换分析和原位能量色散x射线光谱揭示了nanosheets和晶格的修改冠醚的存在叫做加数,分别。构建和评估离子选择性电极对钠离子在水溶液中和一个人工汗液的矩阵。

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