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可控制且稳定的双发射量子点纳米杂化材料作为基于内滤效应的比率型探针,用于可视化三聚氰胺检测。

Controllable and robust dual-emissive quantum dot nanohybrids as inner filter-based ratiometric probes for visualizable melamine detection.

机构信息

College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, P.R. China.

出版信息

Nanoscale. 2020 Feb 21;12(7):4562-4572. doi: 10.1039/c9nr08849k. Epub 2020 Feb 11.

Abstract

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.

摘要

由于其可视化特性,比率荧光技术备受关注。构建用于高灵敏度可视化定量的可靠荧光比率纳米探针受到高度追捧,但由于稳定性和可控性差而受到限制。在此,我们报告了一种稳健的双发射量子点纳米杂化材料,具有精确的颜色可调性,并展示了其作为用于视觉检测的双信号变化比率探针的潜力。开发了一种新颖的组装策略,用于将疏水性绿色和红色量子点 (QD) 空间植入到二氧化硅支架中,以形成双发射分层荧光硅纳米杂化材料。通过改变绿色和红色 QD 的量,可以精确调整纳米杂化材料的荧光强度比和颜色。特别是,在烷基硅烷介导的相转移和外部二氧化硅壳生长后,纳米杂化材料表现出原始 QD 的荧光特性和稳健的光学/胶体稳定性得到了很好的保留。最终,通过将光谱重叠的双色荧光纳米杂化材料与分析物特异性金纳米颗粒结合,设计了一种基于内滤效应的比率荧光纳米探针,用于可视化测定三聚氰胺。此外,基于三聚氰胺诱导的双色 QD 的荧光信号变化的可逆性,构建了用于三聚氰胺监测的逻辑门策略。新开发的荧光比率纳米探针有望用于复杂生物基质中分析物的可视化和定量测定。

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