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首页> 外文期刊>ACS Omega >Photostability of the Oleic Acid-Encapsulated Water-Soluble CdxSeyZn1–xS1–y Gradient Core–Shell Quantum Dots
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Photostability of the Oleic Acid-Encapsulated Water-Soluble CdxSeyZn1–xS1–y Gradient Core–Shell Quantum Dots

机译:油酸包封的水溶性Cd x / se y zn 1- x s 1- y 梯度核心壳量子点

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摘要

Composite systems where quantum dots (QDs) are combined with other nanomaterials (e.g., gold nanorods) in aqueous solutions have attracted broad attention—both for their potential in applications and for studies of fundamental processes. However, high-quality QDs are typically prepared in organic solvents, and the transfer of QDs to an aqueous phase is needed to create the desired QD composites. Photostability of the transferred QDs—both the steady-state and photo-induced dynamic properties—is essential for studying the processes in the composites and for their applications. We present a detailed study of the photostability of aqueous Cd_(x )Se_(y )Zn_(1–x )S_(1–y ) gradient core–shell QDs obtained by various approaches using linker exchange and surfactant encapsulation. Beside the steady-state photoluminescence (PL) emission stability, we also study changes in the PL decay. From the variety of the studied samples, the water-soluble QDs encapsulated by a double layer of oleic acid show superior properties, that is, stable PL emission and PL decay under continuous light or pulsed-laser light irradiation. We demonstrate that the double-layer encapsulation of QDs can be used to create QDs–metal nanoparticle composites.
机译:量子点(QDS)与水溶液中其他纳米材料(例如,金纳米棒)与水溶液中的其他纳米材料(例如,金纳米棒)相结合的复合系统引起了广泛的关注 - 两者都在应用中的潜力和基本过程的研究。然而,通常在有机溶剂中制备高质量的QD,并且需要将QDS转移到水相以产生所需的QD复合材料。转移的QDS的光稳定性 - 稳态和光诱导的动态性质 - 对于研究复合材料和应用的过程是必不可少的。我们介绍了通过各种所获得的含水CD _(

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