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The effects of discrete and gradient mid-shell structures on the photoluminescence of single InP quantum dots

机译:mid-shell离散和梯度的影响结构单输入的光致发光量子点

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摘要

We investigated the dependence of the spectral diffusion and blinking behaviors of indium phosphide (InP) based core/shell/shell quantum dots (QDs) on their mid-shell compositions. We synthesized two types of core/shell/shell QDs having different mid-shell structures by controlling the shell thickness, the total sizes, and the selenium to sulfur ratios. The QDs with a discrete mid-shell (DS-QDs) exhibited a higher photoluminescence (PL) quantum yield (QY) and a narrower PL linewidth than the QDs with a gradient mid-shell (GS-QDs). By analyzing X-ray diffraction (XRD) patterns, and Raman spectra, we found that GS-QDs showed a larger lattice mismatch between the core and the shell than DS-QDs. Also, the spectral diffusion, PL blinking, Auger ionization efficiencies, and the lifetime blinking behavior on single QDs revealed that DS-QDs were nearly unaffected by the defect traps.
机译:我们调查了光谱的依赖铟的扩散和闪烁的行为磷化(基于InP)核/壳/壳量子点(量子点)mid-shell成分。合成了两种类型的核/壳量子点/壳有不同的mid-shell结构控制凝固壳厚度,总大小,和硒硫率。离散mid-shell (DS-QDs)表现出更高的光致发光(PL)量子收益率(QY)和一个窄PL谱线宽度比量子点的梯度mid-shell (GS-QDs)。衍射(XRD)模式,和拉曼光谱,我们发现GS-QDs显示更大的晶格核心和壳之间的不匹配DS-QDs。闪烁,钻电离效率,一生中闪烁的行为显示量子点单DS-QDs几乎未受影响的缺陷陷阱。

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