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Crystal Phase Transitions in the Shell of PbS CdS Core Shell Nanocrystals Influences Photoluminescence Intensity

机译:pbs Cds核壳纳米晶壳中晶相转变对光致发光强度的影响

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摘要

ABSTRACT We reveal the existence of two different crystalline phases, i.e., the metastable rock salt and the equilibrium zinc blende phase within the CdS shell of PbS CdS core shell nanocrystals formed by cationic exchange. The chemical composition profile of the core shell nanocrystals with different dimensions is determined by means of anomalous small angle X ray scattering with subnanometer resolution and is compared to X ray diffraction analysis. We demonstrate that the photoluminescence emission of PbS nanocrystals can be drastically enhanced by the formation of a CdS shell. Especially, the ratio of the two crystalline phases in the shell significantly influences the photoluminescence enhancement. The highest emission was achieved for chemically pure CdS shells below 1 nm thickness with a dominant metastable rock salt phase fraction matching the crystal structure of the PbS core. The metastable phase fraction decreases with increasing shell thickness and increasing Exchange times. The photoluminescence intensity depicts a constant decrease with decreasing metastable rock salt phase fraction but Shows an abrupt drop for shells above 1.3 nm thickness. We relate this effect to two different transition mechanisms for changing from the metastable rock salt phase to the equilibrium zinc blende phase depending on the shell thickness
机译:摘要我们揭示了通过阳离子交换形成的PbS CdS核壳纳米晶体的CdS壳内存在两种不同的结晶相,即亚稳岩盐和平衡锌共混相。通过具有亚纳米级分辨率的异常小角X射线散射来确定具有不同尺寸的核壳纳米晶体的化学组成分布,并将其与X射线衍射分析进行比较。我们证明,CbS壳的形成可以大大增强PbS纳米晶体的光致发光发射。特别地,壳中两个结晶相的比例显着影响光致发光的增强。对于厚度小于1 nm的化学纯CdS壳,其主要的亚稳岩盐相分数与PbS核的晶体结构相匹配,实现了最高发射。亚稳态相分数随壳厚度的增加和交换时间的增加而降低。光致发光强度表示随着亚稳岩盐相分数的降低而不断减小,但对于厚度大于1.3 nm的壳层则显示出急剧的下降。我们将此效应与取决于壳厚度从亚稳岩盐相到平衡锌混合相的两种不同过渡机制相关联

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