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在钙十字沸石复合材料传感器上形成的珊瑚状、自组装且具有空间限定性的银纳米颗粒,用于准确、协同和超痕量磺胺嘧啶检测。

Coral-like, self-assembled, and spatially bounded Ag nano-particles on franzinite zeolite composite sensor toward accurate, synergetic, and ultra-trace sulfadiazine detection.

作者信息

Zhu Xinyu, Li Zhuozhe, Fang Fang, E Yifeng, Chen Peng, Li Li, Qian Kun

机构信息

Jinzhou Medical University, Jinzhou, 121001, PR China.

Key Laboratory of Functional Inorganic Material Chemistry, School of Chemistry and Materials Science, Heilongjiang University, Harbin, 150080, PR China.

出版信息

Anal Chim Acta. 2023 Oct 2;1276:341619. doi: 10.1016/j.aca.2023.341619. Epub 2023 Jul 19.

Abstract

A coral-like Ag@FRA zeolite nanocomposite sensor reveals high sensitivity toward sulfadiazine (SDZ) in a dual detection of fluorescence and electrochemistry. The sensor has been as-synthesized in the hydrothermal condition through a one-pot self-assembly process in which the high crystalline Ag nanoparticles (NPs) are closely arranged and stacked on the nanosized surface cage window of the FRA (Franzinite) zeolite. Strong ultrasound can drive the coral-like composite release Ag nanoparticles whose distribution range mainly from 10 to 12 nm lead to the purple fluorescence in an emission spectrum. In sea water, the fluorescence increases linearly in the SDZ concentration range of 5 × 10-5 × 10 M. Furthermore, the LOD (limit of detection) reaches 1.4 × 10 M by the spatial confinement effect of the coral-liked FRA cage structure in CV (cyclic voltammetry) method at the characteristic potential peak position of 0.1 V vs. SCE. The theoretical calculation also confirms that the FRA cage structure matches well with the SDZ molecules. Further studies indicate the generation of a novel stable composite sensor with high specificity, good recovery and repeatability, which depends on the induction of silver ions upon the artificial synthesis of FRA.

摘要

一种珊瑚状的Ag@FRA沸石纳米复合传感器在荧光和电化学双检测中对磺胺嘧啶(SDZ)显示出高灵敏度。该传感器是在水热条件下通过一锅自组装过程合成的,其中高结晶度的银纳米颗粒(NPs)紧密排列并堆叠在FRA(Franzinite)沸石的纳米尺寸表面笼形窗口上。强烈的超声可以驱动珊瑚状复合材料释放银纳米颗粒,其分布范围主要为10至12纳米,导致发射光谱中出现紫色荧光。在海水中,荧光在5×10⁻⁵至5×10⁻⁴M的SDZ浓度范围内呈线性增加。此外,通过在相对于饱和甘汞电极(SCE)为0.1V的特征电位峰位置采用循环伏安法(CV),利用珊瑚状FRA笼结构的空间限制效应,检测限(LOD)达到1.4×10⁻⁸M。理论计算也证实FRA笼结构与SDZ分子匹配良好。进一步的研究表明,通过在人工合成FRA时引入银离子,生成了一种具有高特异性、良好回收率和可重复性的新型稳定复合传感器。

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