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Optical properties of water-soluble l-cysteine-capped alloyed CdSeS quantum dot passivated with ZnSeTe and ZnSeTe/ZnS shells

机译:ZnSeTe和ZnSeTe / ZnS壳钝化的水溶性l-半胱氨酸封端的CdSeS合金量子点的光学性质

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摘要

Alloyed quantum dots (QDs) passivated with shell materials have valuable optical characteristics suitable for a wide array of applications. In this work, alloyed ternary CdSeS QDs passivated with ZnSeTe and ZnSeTe/ZnS shells have been synthesized via a hot-injection method and a ligand exchange reaction employing l-cysteine as a thiol ligand has been used to obtain these water-soluble nanocrystals for the first time. The photoluminescence (PL) quantum yield (QY) of alloyed l-cysteine-capped CdSeS was 71.2% but decreased significantly to 5.2% upon passivation with a ZnSeTe shell. The red shift in PL emission of the CdSeS/ZnSeTe QDs was attributed to be strain-induced whilst a lattice-induced process likely created defect states in the core/shell interface hence contributing to the decline in the PL QY. Nonetheless, the fluorescence stability of CdSeS/ZnSeTe QDs in aqueous solution was unperturbed. Further passivation with a ZnS shell (CdSeS/ZnSeTe/ZnS) improved the PL QY to a value of 58.7% and thus indicates that the defect state in the QDs core/shell/shell structure was reduced. PL lifetime exciton measurements indicated that the rates of decay of the QDs influenced their photophysical properties.
机译:用壳材料钝化的合金量子点(QD)具有适用于多种应用的有价值的光学特性。在这项工作中,已通过热注射方法合成了用ZnSeTe和ZnSeTe / ZnS壳钝化的合金三元CdSeS QD,并已使用以L-半胱氨酸为硫醇配体的配体交换反应获得了这些水溶性纳米晶体。第一次。合金化的L-半胱氨酸封端的CdSeS的光致发光(PL)量子产率(QY)为71.2%,但在用ZnSeTe壳钝化后显着降低至5.2%。 CdSeS / ZnSeTe QD的PL发射的红移归因于应变诱导,而晶格诱导的过程可能在核/壳界面中形成缺陷状态,从而导致PL QY下降。但是,CdSeS / ZnSeTe QD在水溶液中的荧光稳定性不受干扰。用ZnS壳层(CdSeS / ZnSeTe / ZnS)进一步钝化可将PL QY值提高到58.7%,从而表明QDs壳层/壳层结构中的缺陷状态得以降低。 PL寿命激子的测量表明,量子点的衰减速率影响了它们的光物理性质。

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