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Silicon Quantum Dot-Based Fluorescent Probe: Synthesis Characterization and Recognition of Thiocyanate in Human Blood

机译:硅量子点荧光探针:人体血液中硫氰酸盐的合成表征与识别

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Allylamine-functionalized silicon quantum dots (ASQDs) of high photostability are synthesized by a robust inverse micelle method to use the material as a fluorescent probe for selective recognition of thiocyanate (a biomarker of a smoker and a nonsmoker). The synthesized ASQDs were characterized by absorption, emission, and Fourier transform infrared spectroscopy. Surface morphology is studied by transmission electron microscopy and dynamic light scattering. The synthesized material exhibits desirable fluorescence behavior with a high quantum yield. A selective and accurate (up to 10–10 M) method of sensing of thiocyanate anion is developed based on fluorescence amplification and quenching of ASQDs. The sensing mechanism is investigated and interpreted with a crystal clear mechanistic approach through the modified Stern–Volmer plot. The developed material and the method is applied to recognize the anion in the human blood sample for identification of the degree of smoking. The material deserves high potentiality in the field of bio-medical science.
机译:通过鲁棒的反胶束方法合成了具有高光稳定性的烯丙胺官能化的硅量子点(ASQD),以将该材料用作选择性识别硫氰酸盐(吸烟者和非吸烟者的生物标记)的荧光探针。通过吸收,发射和傅立叶变换红外光谱对合成的ASQD进行表征。通过透射电子显微镜和动态光散射研究表面形态。合成的材料表现出期望的荧光行为以及高量子产率。基于荧光扩增和猝灭ASQD,开发了一种选择性且准确的(高达10-10 M)感测硫氰酸根阴离子的方法。通过修改后的斯特恩-沃尔默作图,以清晰的机械方法研究并解释了感应机制。所开发的材料和方法适用于识别人血样品中的阴离子以鉴定吸烟程度。该材料在生物医学领域应具有很高的潜力。

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