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Multimodal optical studies of single and clustered colloidal quantum dots for the long-term optical property evaluation of quantum dot-based molecular imaging phantoms

机译:单峰和簇状胶体量子点的多峰光学研究用于基于量子点的分子成像模型的长期光学性质评估

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摘要

Understanding the optical properties of clustered quantum dots (QDs) is essential to the design of QD-based optical phantoms for molecular imaging. Single and clustered core/shell colloidal QDs of dimers, trimers, and tetramers are self-assembled, separated, and preferentially collected using electrospray differential mobility analysis (ES-DMA) with electrostatic deposition. Multimodal optical characterization and analysis of their dynamical photoluminescence (PL) properties enables the long-term evaluation of the physicochemical and optical properties of QDs in a single or a clustered state. A multimodal time-correlated spectroscopic confocal microscope capable of simultaneously measuring the time evolution of PL intensity fluctuation, PL lifetime, and emission spectra reveals the long-term dynamic optical properties of interacting QDs in individual dimeric clusters of QDs. This new method will benefit research into the quantitative interpretation of fluorescence intensity and lifetime results in QD-based molecular imaging techniques. The process of photooxidation leads to coupling of the QDs in a dimer, leading to unique optical properties when compared to an isolated QD. These results guide the design and evaluation of QD-based phantom materials for the validation of the PL measurements for quantitative molecular imaging of biological samples labeled with QD probes.
机译:了解簇量子点(QD)的光学特性对于分子成像基于QD的光学模型的设计至关重要。二聚体,三聚体和四聚体的单簇和簇状核/壳胶体QD可以自组装,分离并优先使用静电喷雾电喷雾差分迁移率分析(ES-DMA)进行收集。多峰光学特性及其动态光致发光(PL)特性的分析使得能够对单个或成簇状态的量子点的物理化学和光学特性进行长期评估。多模式时间相关光谱共聚焦显微镜能够同时测量PL强度波动,PL寿命和发射光谱的时间演变,揭示了QD单个二聚体簇中相互作用的QD的长期动态光学特性。这种新方法将有助于基于量子点的分子成像技术对荧光强度和寿命结果进行定量解释的研究。与单独的QD相比,光氧化过程导致QD在二聚体中偶联,从而导致独特的光学性能。这些结果指导了基于QD的幻象材料的设计和评估,以验证PL测量的有效性,该PL测量用于对QD探针标记的生物样品进行定量分子成像。

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