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前驱体比例和掺杂剂浓度对铜掺杂的ZnCdSe合金量子点结构和光学性质的影响。

Influence of precursor ratio and dopant concentration on the structure and optical properties of Cu-doped ZnCdSe-alloyed quantum dots.

作者信息

Ca N X, Van H T, Do P V, Thanh L D, Tan P M, Truong N X, Oanh V T K, Binh N T, Hien N T

机构信息

Department of Physics and Technology, TNU-University of Sciences Thai Nguyen Vietnam

Institute of Research and Development, Duy Tan University Da Nang 550000 Vietnam.

出版信息

RSC Adv. 2020 Jul 7;10(43):25618-25628. doi: 10.1039/d0ra04257a. eCollection 2020 Jul 3.

Abstract

Tunable copper doped Zn Cd S alloy quantum dots (QDs) were successfully synthesized by the wet chemical method. A one-step method is developed to synthesize doped ternary QDs which is more preferable than a two-step method. The influence of experimental parameters like the Zn/Cd ratio and Cu dopant concentration has been investigated using various spectroscopic techniques like UV-visible, photoluminescence, X-ray diffraction and Raman spectroscopy. The absorption and emission properties can be tuned by changing the concentration of components of the ternary QDs. The high concentration of dopant completely quenched the emission of the ternary QDs. EDX gives confirmation of the elemental composition of the synthesized samples. The obtained results suggest the successful doping of the ternary QDs. Interestingly, the study results revealed that the crystal structure (ZB and/or WZ) and the dual emission of the Cu-doped Zn Cd Se alloy QDs could be controlled by varying the dopant concentration and chemical composition of the host. Doping also leads to enhancement in emission properties and provides more stability to ternary QDs. The enhancement in the photoluminescence (PL) decay lifetime of Cu-doped ternary QDs can be advantageous for optoelectronic and biosensor applications.

摘要

采用湿化学法成功合成了可调谐的铜掺杂ZnCdS合金量子点(QDs)。开发了一种一步法来合成掺杂的三元量子点,该方法比两步法更可取。使用紫外可见光谱、光致发光光谱、X射线衍射光谱和拉曼光谱等各种光谱技术研究了Zn/Cd比和铜掺杂剂浓度等实验参数的影响。通过改变三元量子点组分的浓度可以调节其吸收和发射特性。高浓度的掺杂剂会完全淬灭三元量子点的发射。能谱分析(EDX)证实了合成样品的元素组成。所得结果表明三元量子点成功实现了掺杂。有趣的是,研究结果表明,通过改变掺杂剂浓度和主体的化学成分,可以控制铜掺杂的ZnCdSe合金量子点的晶体结构(ZB和/或WZ)和双发射。掺杂还会导致发射特性增强,并为三元量子点提供更高的稳定性。铜掺杂三元量子点的光致发光(PL)衰减寿命的延长对光电和生物传感器应用可能具有优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3838/9055275/729ab478166e/d0ra04257a-f1.jpg

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