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硒化镉和硒化镉/硫化镉核壳量子点:合成、光学性质研究及在污染物降解中的应用新方法。

CdSe and CdSe/CdS core-shell QDs: New approach for synthesis, investigating optical properties and application in pollutant degradation.

作者信息

Abbasi S, Molaei M, Karimipour M

机构信息

Department of Physics, Faculty of Science, Vali-e-Asr University, Rafsanjan, Iran.

出版信息

Luminescence. 2017 Nov;32(7):1137-1144. doi: 10.1002/bio.3300. Epub 2017 Apr 5.

Abstract

In this work, CdSe quantum dots (QDs) were synthesized by a simple and rapid microwave activated approach using CdSO , Na SeO as precursors and thioglycolic acid (TGA) as capping agent molecule. A novel photochemical approach was introduced for the growth of CdS QDs and this approach was used to grow a CdS shell around CdSe cores for the formation of a CdSe/CdS core-shell structure. The core-shells were structurally verified using X-ray diffraction, transmission electron microscopy and FTIR (Fourier-transform infrared (FTIR)) spectroscopy. The optical properties of the samples were examined by means of UV-Vis and photoluminescence (PL) spectroscopy. It was found that CdS QDs emit a broad band white luminescence between 400 to 700 nm with a peak located at about 510 nm. CdSe QDs emission contained a broad band resulting from trap states between 450 to 800 nm with a peak located at 600 nm. After CdS shell growth, trap states emission was considerably quenched and a near band edge emission was appeared about 480 nm. Optical studies revealed that the core-shell QDs possess strong ultraviolet (UV) - visible light photocatalytic activity. CdSe/CdS core-shell QDs, showed an enhancement in photodegradation of Methyl orange (MO) compared with CdSe QDs.

摘要

在这项工作中,采用简单快速的微波活化方法,以CdSO、Na₂SeO为前驱体,硫代乙醇酸(TGA)为封端剂分子,合成了CdSe量子点(QDs)。引入了一种新颖的光化学方法来生长CdS量子点,并利用该方法在CdSe核周围生长CdS壳层,以形成CdSe/CdS核壳结构。使用X射线衍射、透射电子显微镜和傅里叶变换红外(FTIR)光谱对核壳结构进行了结构验证。通过紫外可见光谱和光致发光(PL)光谱对样品的光学性质进行了研究。结果发现,CdS量子点在400至700nm之间发射宽带白色发光,峰值位于约510nm处。CdSe量子点的发射包含一个在450至800nm之间由陷阱态产生的宽带,峰值位于600nm处。在生长CdS壳层后,陷阱态发射显著猝灭,在约480nm处出现了近带边发射。光学研究表明,核壳量子点具有很强的紫外-可见光光催化活性。与CdSe量子点相比,CdSe/CdS核壳量子点对甲基橙(MO)的光降解有增强作用。

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