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首页> 外文期刊>Nanoscale >Controllable and robust dual-emissive quantum dot nanohybrids as inner filter-based ratiometric probes for visualizable melamine detection
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Controllable and robust dual-emissive quantum dot nanohybrids as inner filter-based ratiometric probes for visualizable melamine detection

机译:可控的和健壮的dual-emissive量子点nanohybrids内部基于过滤器比率探测器visualizable三聚氰胺检测

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摘要

The ratiometric fluorescence technique is of great interest due to its visualization characteristics. The construction of a reliable fluorescent ratiometric nanoprobe for high-sensitivity visual quantification is highly sought after but it is limited by poor stability and controllability. Herein, we report a robust dual-emissive quantum dot nanohybrid with precise color tunability and demonstrate its potential as a two-signal-change ratiometric probe for visual detection. A novel assembly strategy was developed for spatially implanting hydrophobic green and red quantum dots (QDs) into a silica scaffold to form a dual-emissive hierarchical fluorescent silica nanohybrid. The fluorescence intensity ratio and color of the nanohybrid were precisely tailored by altering the amounts of green and red QDs. Particularly, after the alkylsilane-mediated phase transfer and exterior silica shell growth, the nanohybrid exhibited the well-preserved fluorescence features of the original QDs and robust optical/colloid stability. An inner filter-based ratiometric nanoprobe for the visual determination of melamine was ultimately devised by combining the spectra-overlapped two-colored fluorescent nanohybrid with analyte-specific gold nanoparticles. Furthermore, based on the reversible fluorescence signal changes in two-colored QDs induced by melamine, a logic gate strategy for melamine monitoring was constructed. The newly developed fluorescent ratiometric nanoprobe shows great prospects for the visual and quantitative determination of analytes in a complex biological matrix.
机译:伟大的比率荧光技术由于其可视化的兴趣特征。荧光比率计nanoprobe为高灵敏度视觉量化是高度追求,但受限于稳定性差和可控制性。dual-emissive量子点nanohybrid与精确颜色可调谐性和展示其潜力一个视觉two-signal-change比率探针检测。为空间开发植入疏水绿色和红色硅量子点(量子点)脚手架dual-emissive层次荧光二氧化硅nanohybrid。强度比和nanohybrid的颜色量身定制通过改变的数量量子点绿色和红色。alkylsilane-mediated相转移和外观硅壳增长,nanohybrid展出保存完好的荧光特性量子点原始和健壮的光学/胶体稳定。nanoprobe视觉的决心三聚氰胺是最终设计的结合spectra-overlapped两色荧光nanohybrid analyte-specific黄金纳米粒子。可逆荧光信号的变化三聚氰胺引起的量子点两色,一个逻辑门构建了三聚氰胺的监控策略。新开发的荧光比率计nanoprobe显示了视觉伟大的前景和分析物的定量测定复杂的生物基质。

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