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首页> 外文期刊>Materials science in semiconductor processing >Synthesis of CdTe, CdSe and CdTe/CdSe core/shell QDs from wet chemical colloidal method
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Synthesis of CdTe, CdSe and CdTe/CdSe core/shell QDs from wet chemical colloidal method

机译:湿化学胶体法合成CDTE,CDSE和CDTE / CDSE核心/壳QDS

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In the present study, CdTe, CdSe, and CdTe/CdSe core/shell quantum dots (QDs) have been synthesized with 1-octadecane from colloidal method. The effect of reaction temperature on the properties of CdTe QDs was investigated. The CdTe/CdSe core/shell QDs were synthesized by coating number layers of CdSe onto CdTe core at 190 degrees C. The resultant QDs were characterized with a range of characterization techniques to study the optical, structural, compositional and morphological properties. A systematic red shift was observed in the optical spectra's of CdTe QDs synthesized for reaction temperatures in the range 130-250 degrees C. The size of CdTe QDs was estimated in the range 2.5-4 nm from the position of absorption peak. The effect of reaction temperature on the interplanar distance 'd', crystallite size and elemental composition of the CdTe QDs is studied. The emission spectra of CdTe/CdSe core/shell QDs attributed at higher wavelength as compared to pristine CdTe demonstrates the indirect excitation in CdTe core. The XRD pattern revealed the cubic crystal structure of CdTe and CdSe QDs with reflections (111), (220) and (311). The synthesis of monodispersed spherical QDs with narrow size distribution are confirmed by TEM images. Three diffused ring observed in SAD patterns of CdTe, CdSe and CdTe/CdSe core/shell are corresponds to (111), (220) and (311) reflection of cubic crystal structure. The lattice spacing obtained by SAD patterns and HRTEM images are in good agreement with standard 'd' spacing. The compositional analysis studied by EDS revealed the stoichiometric growth of QDs. The effect of shells of various layers on the Raman spectra of CdTe/CdSe core/shell QDs is studied. The shift reveled in longitudinal optical (LO) peaks for the CdTe/CdSe core/shell QDs is associated to the lattice mismatch between CdTe and CdSe QDs.
机译:在本研究中,CDTE,CDSE和CDTE / CDSE核/壳料芯片量子点(QDS)已经用来自胶体方法的1-十八烷基化合成。研究了反应温度对CDTE QDS性能的影响。通过在190℃下通过将CDSE层层层涂覆到CDTE核的CDTE层上合成CDTE / CDSE核/壳QD。结果QDS的特征在于研究光学,结构,组成和形态学性质的一系列表征技术。在130-250℃的反应温度合成的CDTE QD的光谱中观察到系统的红色移位。从吸收峰的位置估计CDTE QD的尺寸。研究了反应温度对CDTE QDS的晶体距离'D',微晶尺寸和元素组成的影响。与原始CDTE相比,在更高波长的CDTE / CDSE核心/壳QD的发射光谱显示CDTE核心的间接激发。 XRD图案显示CDTE和CDSE QD的立方晶体结构,具有反射(111),(220)和(311)。通过TEM图像确认具有窄尺寸分布的单分散的球形QD的合成。在CdTe,CdSe和CdTe / Cdse核心/壳的悲伤模式中观察到的三个扩散环对应于立方晶体结构的(111),(220)和(311)反射。通过悲伤模式和HRTEM图像获得的格子间距与标准的“D”间距吻合良好。 EDS研究的组成分析显示QDS的化学计量生长。研究了各层壳对CDTE / CDSE核心/壳QDS的拉曼光谱的影响。在CDTE / CDSE核心/壳QDS的纵向光学(LO)峰值中旋转的偏移与CDTE和CDSE QD之间的晶格错配相关联。

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