首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Excitation-independent emission carbon nanoribbon polymer as a ratiometric photoluminescent probe for highly selective and sensitive detection of quercetin
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Excitation-independent emission carbon nanoribbon polymer as a ratiometric photoluminescent probe for highly selective and sensitive detection of quercetin

机译:激发无关的排放碳纳米孔聚合物,作为比例的光致发光探针,用于槲皮素的高选择性和敏感性检测

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摘要

In this study, sulfur-nitrogen co-doped carbon nanoribbon (SNCNR) polymers with stable dual-emission fluorescence were synthesized using a one-step traditional hydrothermal method of 6-mercaptopurine in an aqueous methanol solution. Unexpectedly, the as-prepared SNCNRs with excitation-independent emission, as carbon nanomaterial derivatives, showed stable dispersions of a reticular-like shape and different lengths in the skeleton diameter. Compared with other carbon nanomaterials, the SNCNRs dramatically improved the electronic properties and surface chemical reactivities, and exhibited a sensitive ratiometric response to quercetin (Que) because of the Meisenheimer-like complexes formed through - stacking and electrostatic interaction. By using this SNCNR sensor, excellent ratiometric linear relationships (FL345 nm/FL420 nm) existed between the degree of quenching of the SNCNRs and the concentrations of Que in the range of 50.0 nM to 200 M, and the limit of detection was 21.13 nM (3 sigma/k). Meanwhile, this sensor shows high selectivity for Que over other biomolecules, most amino acids and metal ions under the same conditions. Finally, this fluorescent probe was successfully applied to the direct analysis of Que in bovine serum and some beverage samples, which showed that it has potential for use in applications in clinical diagnosis and food analysis, and may pave the way for the design of effective fluorescent probes for other biologically related targets and food protection.
机译:在该研究中,使用甲醇溶液水溶液中的6-巯基嘌呤的一步传统的水热法合成具有稳定的双发射荧光的硫 - 氮的共掺杂碳纳米(SNCNR)聚合物。出乎意料地,作为碳纳米材料衍生物的激发无关的发射的AS制备的SNCNR显示出网状形状的稳定分散体和骨架直径的不同长度。与其他碳纳米材料相比,SNCNRS显着改善了电子性质和表面化学反应性,并且由于通过堆叠和静电相互作用形成的Meisenheimer样络合物,对槲皮素(QUE)的敏感比率反应。通过使用该SNCNR传感器,在SNCNR的猝灭程度和50.0nm至200μm范围内的猝灭程度之间存在优异的比例线性关系(FL345nm / fl420nm),并且检测限为21.13 nm( 3 sigma / k)。同时,该传感器在相同条件下显示出对其他生物分子,大多数氨基酸和金属离子的Que的高选择性。最后,该荧光探针成功地应用于牛血清和一些饮料样品的Que直接分析,这表明它具有在临床诊断和食物分析中​​的应用中使用的可能性,并且可以为有效荧光设计铺平道路其他生物相关目标和食品保护的探讨。

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