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用于光电子应用的硒化镉(CdSe)量子点的铕掺杂快速微波合成法。

Europium doping of cadmium selenide (CdSe) quantum dots rapid microwave synthesis for optoelectronic applications.

作者信息

Thomas Donovan, Lee Harold O, Santiago Kevin C, Pelzer Marvin, Kuti Ayodeji, Treadwell LaRico J, Bahoura Messaoud

机构信息

Center for Materials Research, Norfolk State University, Norfolk, Virginia 23504, USA.

Sandia National Laboratories, Advanced Materials Laboratory, Albuquerque, New Mexico 87106, USA.

出版信息

Dalton Trans. 2021 Dec 20;51(1):264-273. doi: 10.1039/d1dt02920g.

Abstract

The tunability of optical properties in inorganic semiconductor quantum dots (QDs) allows them to be exceptional candidates for multiple optical and optoelectronic applications. While QD size dictates these properties, the addition of highly luminescent rare-earth elements also affects absorption and emission properties. In this work, we were able to successfully synthesize europium-doped CdSe QDs using a one-pot microwave synthesis method. Using recipes that we previously developed, we were able to synthesize Eu:CdSe quantum dots and tune their optical properties by varying microwave irradiation temperatures, hold times, and dopant concentration. UV-Vis spectroscopy and photoluminescence data show that structural incorporation of europium has an effect on the optical properties of CdSe QDs energy transfer from host to dopant. Eu:CdSe QDs have diameters ranging from 4.6-10.0 nm and colors ranging from blue-green to dark red. The development of recipes for high throughput rapid microwave synthesis allows for QDs to be synthesized with repeatability, tunability, and scalability.

摘要

无机半导体量子点(QDs)光学性质的可调性使其成为多种光学和光电子应用的理想候选材料。虽然量子点的尺寸决定了这些性质,但添加高发光稀土元素也会影响吸收和发射特性。在这项工作中,我们使用一锅法微波合成方法成功合成了铕掺杂的CdSe量子点。利用我们之前开发的配方,我们能够合成Eu:CdSe量子点,并通过改变微波辐照温度、保温时间和掺杂剂浓度来调节其光学性质。紫外-可见光谱和光致发光数据表明,铕的结构掺入对CdSe量子点的光学性质有影响,即从主体到掺杂剂的能量转移。Eu:CdSe量子点的直径范围为4.6-10.0 nm,颜色范围从蓝绿色到深红色。高通量快速微波合成配方的开发使得量子点能够以可重复性、可调性和可扩展性进行合成。

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