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Semiconductor Quantum Dots as Components of Photoactive Supramolecular Architectures

机译:半导体量子点作为光敏超分子体系结构的组成部分

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摘要

Luminescent quantum dots (QDs) are colloidal semiconductor nanocrystals consisting of an inorganic core covered by a molecular layer of organic surfactants. Although QDs have been known for more than thirty years, they are still attracting the interest of researchers because of their unique size‐tunable optical and electrical properties arising from quantum confinement. Moreover, the controlled decoration of the QD surface with suitable molecular species enables the rational design of inorganic‐organic multicomponent architectures that can show a vast array of functionalities. This minireview highlights the recent progress in the use of surface‐modified QDs – in particular, those based on cadmium chalcogenides – as supramolecular platforms for light‐related applications such as optical sensing, triplet photosensitization, photocatalysis and phototherapy.
机译:发光量子点(QDs)是胶体半导体纳米晶体,由被有机表面活性剂分子层覆盖的无机核组成。尽管量子点已经有三十多年的历史了,但由于量子限制引起的独特的尺寸可调的光学和电学性质,它们仍吸引着研究人员的兴趣。此外,通过使用合适的分子种类对QD表面进行可控的装饰,可以合理设计无机-有机多组分结构,从而显示出广泛的功能。这份小型回顾着重介绍了使用表面修饰的量子点,尤其是基于镉硫属化物的量子点作为光相关应用的超分子平台,如光学传感,三重态光敏化,光催化和光疗的最新进展。

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