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Synthesis of highly luminescent wurtzite CdSe/CdS giant-shell nanocrystals using a fast continuous injection route

机译:采用快速连续注入法合成高亮度纤锌矿Cdse / Cds巨壳纳米晶

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摘要

We synthesized CdSe/CdS giant-shell nanocrystals, with a CdSecore diameter between 2.8 nm and 5.5 nm, and a CdS shell thickness of up to 7-8 nm (equivalent to about 20 monolayers of CdS). Both the core and shell have a wurtzite crystal structure, yielding epitaxial growth of the shell and nearly defect-free crystals. As a result, the photoluminescence (PL) quantum efficiency (QE) is as high as 90%. Quantitative PL measurements at various excitation wavelengths allow us to separate the nonradiative decay into contributions from interface and surface trapping, giving us pathways for future optimization of the structure. In addition, the NCs do not blink, and the giant shell and concurring strong electron delocalization efficiently suppress Auger recombination, yielding a biexciton lifetime of about 15 ns. The corresponding biexciton PL QE equals 11% in 5.5/18.1 nm CdSe/CdS. Variable-temperature time-resolved PL and PL under magnetic fields further reveal that the emission at cryogenic temperature originates from a negative trion-state, in agreement with other CdSe/CdS giant-shell systems reported in the literature.
机译:我们合成了CdSe / CdS巨壳纳米晶体,其CdSecore直径在2.8 nm至5.5 nm之间,并且CdS壳厚度最高达7-8 nm(相当于约20个单层CdS)。核和壳都具有纤锌矿晶体结构,导致壳的外延生长和几乎无缺陷的晶体。结果,光致发光(PL)量子效率(QE)高达90%。在各种激发波长下的定量PL测量值使我们能够将非辐射衰变分离为界面和表面陷阱的贡献,从而为我们将来优化结构提供了途径。此外,NC不会闪烁,并且巨壳和强力的电子离域作用有效地抑制了俄歇重组,从而产生了约15 ns的双激子寿命。相应的双激子PL QE在5.5 / 18.1 nm CdSe / CdS中等于11%。与文献中报道的其他CdSe / CdS巨壳系统相一致,在磁场下可变温度时间分辨的PL和PL进一步揭示了低温下的发射源自负三态。

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