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Mechanistic insight into the nucleation and growth of oleic acid capped lead sulphide quantum dots

机译:深入了解油酸封端的硫化铅量子点的成核和生长机理

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The quantum dots (QDs) of lead sulphide (PbS) are attractive near-infrared (NIR) active materials and have promising applications in a wide variety of applications. Till date many efforts have been made on optimizing its synthesis; however, current mechanistic understanding involving the nucleation and growth of these QDs has not reached the same level as that for other QDs. In this study, we present a detailed understanding on synthesis mechanism of PbS QDs so as to provide guidance for future QDs synthesis. The synthesis of PbS QDs is largely independent of classical nucleation process and the hot-injection of precursors may not be necessary for the successful synthesis of PbS QDs. The synthesis is basically a growth dominated process and is controlled by the Ostwald ripening of PbS QDs. In addition, reaction temperature and ligand are the key parameters for controlling QD growth. Temperature provides energy for overcoming activation barrier of QD growth while the ligands enhance QD growth via altering the environment for QD growth. Following the mechanism governing the synthesis of PbS QDs, we demonstrate that the size tuning of PbS QDs in ultra-small (<2 nm) can be achieved, which has been typically challenging following the hot injection synthesis.
机译:硫化铅(PbS)的量子点(QDs)是有吸引力的近红外(NIR)活性材料,在各种应用中都具有广阔的应用前景。迄今为止,已经在优化其合成方面进行了许多努力。但是,目前涉及这些量子点的形核和生长的机械理解还没有达到与其他量子点相同的水平。在这项研究中,我们对PbS量子点的合成机理进行了详细的了解,以便为将来的量子点合成提供指导。 PbS QD的合成在很大程度上与经典的成核过程无关,并且热注射前体对于成功合成PbS QD可能不是必需的。合成基本上是一个以增长为主导的过程,并且受PbS QD的Ostwald成熟控制。此外,反应温度和配体是控制QD生长的关键参数。温度为克服QD生长的激活障碍提供了能量,而配体则通过改变QD生长的环境来增强QD生长。遵循控制PbS QD合成的机制,我们证明了可以实现超小(<2 nm)的PbS QD尺寸调整,这在热注射合成之后通常具有挑战性。

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