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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Effect of Shell Thickness on the Optical Properties in CdSe/CdS/ Zn_(0.5)Cd_(0.5)S/ZnS and CdSe/CdS/Zn_xCd_(1-x)S/ZnS Core/Multishell Nanocrystals
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Effect of Shell Thickness on the Optical Properties in CdSe/CdS/ Zn_(0.5)Cd_(0.5)S/ZnS and CdSe/CdS/Zn_xCd_(1-x)S/ZnS Core/Multishell Nanocrystals

机译:壳厚度对CdSe / CdS / Zn_(0.5)Cd_(0.5)S / ZnS和CdSe / CdS / Zn_xCd_(1-x)S / ZnS核/多壳纳米晶体光学性质的影响

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摘要

The evolution of optical properties of two types of core/ multishell nanocrystals (NCs)-type A (CdSe/CdS/Zn_(0.5)Cd_(0.5)S/ZnS) and type B (CdSe/CdS/Zn_xCd_(1-x)S/ZnS)-with an increase of shell thickness from 3.5 to 15.5 monolayers (MLs) has been studied. When the shell thickness was 9.5 MLs and more, the stability would be greatly improved and the quantum yields (QYs) almost did not change during the process of purification. Even after phase transfer experiment, the QYs of the water-soluble NCs were still kept 70-99% of their initial level. The as-prepared water-soluble NCs with 9.5 MLs and more also exhibited high stability in varying physiological conditions under PBS buffer and continuous UV radiation. For type B core/ multishell NCs, due to a consecutive change of lattice parameters from core to shells, there were almost no defects induced between theCdSe core and ZnS shell. As a result, they had higher QYs and stability than type A core/multishell NCs at the same test condition.
机译:两种类型的核/多壳纳米晶体(NCs)A型(CdSe / CdS / Zn_(0.5)Cd_(0.5)S / ZnS)和B型(CdSe / CdS / Zn_xCd_(1-x)的光学性能演变S / ZnS)-的壳厚度从3.5增至15.5单层(ML)。当壳厚度为9.5 MLs或更大时,稳定性将大大提高,并且在纯化过程中量子产率(QYs)几乎不变。即使经过相转移实验,水溶性NC的QY仍保持其初始水平的70-99%。制备的9.5 MLs和更多的水溶性NCs在PBS缓冲液和连续UV辐射下,在各种生理条件下也表现出高稳定性。对于B型核/多壳NC,由于晶格参数从核到壳的连续变化,CdSe核与ZnS壳之间几乎没有引起缺陷。结果,它们在相同测试条件下比A型核/多壳NC具有更高的QY和稳定性。

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