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一锅法合成及表征新型蓝光发射源CuCrS/ZnS核壳量子点

One-Pot Synthesis and Characterization of CuCrS/ZnS Core/Shell Quantum Dots as New Blue-Emitting Sources.

作者信息

Lee Ho-Kyung, Ban Ye-Jun, Lee Hyun-Jong, Kim Ji-Hyeon, Park Sang-Joon

机构信息

Department of Chemical and Biological Engineering, Gachon University, 1342, Seongnam Street, Seongnam City 13120, Republic of Korea.

出版信息

Materials (Basel). 2023 Jan 12;16(2):762. doi: 10.3390/ma16020762.

Abstract

In this paper, we introduce a new blue-emitting material, CuCrS/ZnS QDs (CCS QDs). To obtain bright and stable photoluminescent probes, we prepared a core/shell structure; the synthesis was conducted in a one-pot system, using 1-dodecanethiol as a sulfur source and co-ligand. The CCS QDs exhibited a semi-spherical colloidal nanocrystalline shape with an average diameter of 9.0 nm and ZnS shell thickness of 1.6 nm. A maximum photoluminescence emission peak (PL max) was observed at 465 nm with an excitation wavelength of 400 nm and PLQY was 5% at an initial [Cr]/[Cu] molar ratio of one in the core synthesis. With an off-stoichiometric modification for band gap engineering, the CCS QDs exhibited slightly blue-shifted PL emission spectra and PLQY was 10% with an increase in initial molar ratio of 2.0 (462 nm PL max). However, when the initial molar ratio exceeded two, the CCS QDs exhibited a lower photoluminescence quantum yield of 4.5% with 461 nm of PL max at the initial molar ratio of four due to the formation of non-emissive CrS nanoflakes.

摘要

在本文中,我们介绍了一种新型蓝色发光材料,即硫化铜铬/硫化锌量子点(CCS量子点)。为了获得明亮且稳定的光致发光探针,我们制备了一种核壳结构;合成过程在一锅体系中进行,使用1-十二硫醇作为硫源和共配体。CCS量子点呈现出半球形胶体纳米晶体形状,平均直径为9.0纳米,硫化锌壳层厚度为1.6纳米。在激发波长为400纳米时,观察到最大光致发光发射峰(PL最大值)位于465纳米处,并且在核合成中初始[Cr]/[Cu]摩尔比为1时,光致发光量子产率(PLQY)为5%。通过非化学计量改性进行带隙工程,CCS量子点呈现出略微蓝移的光致发光发射光谱,并且当初始摩尔比增加到2.0时(PL最大值为462纳米),PLQY为10%。然而,当初始摩尔比超过2时,由于形成了非发光的硫化铬纳米片,在初始摩尔比为4时,CCS量子点的光致发光量子产率较低,为4.5%,PL最大值为461纳米。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efa8/9865205/766e6ed26cb0/materials-16-00762-g001.jpg

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