光致发光
纳米棒
材料科学
异质结
红外线的
纤锌矿晶体结构
芯(光纤)
量子点
量子产额
壳体(结构)
光电子学
纳米技术
发光
光学
复合材料
荧光
物理
冶金
锌
作者
Arsenii S. Portniagin,Jiajia Ning,Shixun Wang,Zhuo Li,Aleksander A. Sergeev,Stephen V. Kershaw,Xiaoyan Zhong,Andrey L. Rogach
标识
DOI:10.1002/adom.202102590
摘要
Abstract Given the ubiquitous examples of semiconductor nanorods synthesis, CuInS 2 ‐based anisotropic heterostructures still lag behind in terms of shape/optical properties control. Here, core/shell CuInS 2 /CdS dot‐in‐rod nanoheterostructures which exhibit high degree of the morphology control, and a strong emission in the near‐infrared range of 700–900 nm, are realized. The authors made use of the seeded growth approach utilizing wurtzite CuInS 2 quantum dots as seeds, which allows for tuning the dimension of the resulting core/shell nanorods, including the core size and the shell thickness. Time‐dependent photoluminescence studies reveal slowing down of the recombination rate with increasing thickness of the shell, which is characteristic for the quasi‐type II heterostructure. Alloying of the CuInS 2 cores with Zn does not perturb the shell growth process, but enables improvement of the photoluminescence quantum yield of the resulting core/shell CuInZnS 2 /CdS nanorods to 45%, as compared to ≈30% for CuInS 2 /CdS nanorods.
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