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Incorporation of luminescent CdSe/ZnS core-shell quantum dots and PbS quantum dots into solution-derived chalcogenide glass films

机译:将发光的CdSe / ZnS核壳量子点和PbS量子点掺入溶液来源的硫族化物玻璃膜中

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CdSe/ZnS core-shell quantum dots (CSQDs) and PbS quantum dots (QDs) were synthesized using a colloidal method and incorporated into Ge23Sb7S70 glass films via a solution-derived approach to film formation. Photoluminescence (PL) from the QDs inside the glass matrix was observed in the visible (CdSe/ZnS) and near-IR (PbS) regions. Properties of the QDs were found to be environment dependent, with the amine solvent partially quenching the luminescence. The PL lifetime of the CdSe/ZnS CSQDs and PbS QDs in the glass film was decreased to varying degrees from that of the QDs in pure chloroform. Monitoring the steady-state PL intensity and luminescence lifetime of PbS doped films showed that appropriate heat treatment of the deposited film increases the luminescence efficiency by removing residual solvent from the glass matrix.
机译:使用胶体方法合成了CdSe / ZnS核壳量子点(CSQDs)和PbS量子点(QDs),并通过溶液衍生法将其掺入Ge23Sb7S70玻璃膜中。在可见(CdSe / ZnS)和近红外(PbS)区域观察到来自玻璃基质内部QD的光致发光(PL)。发现量子点的性质与环境有关,其中胺溶剂部分淬灭了发光。玻璃膜中CdSe / ZnS CSQDs和PbS QDs的PL寿命与纯氯仿中的QDs有所不同。监测PbS掺杂薄膜的稳态PL强度和发光寿命表明,对沉积薄膜进行适当的热处理可以通过从玻璃基质中去除残留溶剂来提高发光效率。

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