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Design, synthesis and photophysical properties of InP/CdS/CdSe and CdTe/CdS/CdSe (core/shell/shell) quantum dots for photon upconversion

机译:INP / CDS / CDSE和CDTE / CDS / CDSE(核/壳/壳)量子点的设计,合成和光学性性能用于光子上变化

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Complex core/multi-shell quantum dot (QD) configurations can be used to tailor light absorption and emission properties. We present a core/shell/shell/shell structure designed to implement efficient photon upconversion. We report on the design and characterization of two intermediate products that could progress to implement this design: InP/CdS/CdSe and CdTe/CdS/CdSe. Products were synthesized by adapting established procedures for the colloidal synthesis of nanoparticles in solution. Transmission electron microscopy (TEM) and x-ray diffraction (XRD) were used to determine particle size, crystallinity, and band alignment. The photophyscial properties of the intermediate products were characterized using steady-state absorption and photoluminescence (PL) spectroscopy. The results suggest that the core/multi-shell structure successfully confines an optically-generated hole in the QD core while allowing the electron to escape to the outer shell. This independent control over carrier transfer dynamics provides the tools necessary to implement efficient photon upconversion.
机译:复杂核心/多壳量子点(QD)配置可用于量体光吸收和排放性能。我们提出了一种芯/壳/壳/壳结构,旨在实现高效的光子上升性。我们报告了两种中间产品的设计和表征,可以进展实现这一设计:INP / CDS / CDSE和CDTE / CDS / CDSE。通过适应溶液中纳米颗粒的胶体合成的建立程序来合成产品。使用透射电子显微镜(TEM)和X射线衍射(XRD)来确定粒度,结晶度和带对准。使用稳态吸收和光致发光(PL)光谱表征中间产物的光学性质。结果表明,核心/多壳结构成功地限制了QD芯中的光学产生的孔,同时允许电子逸出到外壳。对载波传输动态的这种独立控制提供了实现有效的光子上转换所需的工具。

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