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Synthesis and Characterization of Colloidal CdTe Nano crystals

机译:胶态CdTe纳米晶体的合成与表征

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We synthesized CdTe nano crystals (NCs) in uniform sizes and in good quality as characterized by photoluminescence (PL), AFM, and X-ray diffraction. In this growth procedure, CdTe nano-crystal band gap is strongly dependent on the growth time and not on the injection temperature or organic ligand concentration. This is very attractive because of nano-crystal size can be easily controlled by the growth time only and is very attractive for large scale synthesis. The color of the solution changes from greenish yellow to light orange then to deep orange and finally grayish black to black over a period of one hour. This is a clear indication of the gradual growth of different size (and different band gap) of CdTe nano-crystals as a function of the growth time. In other words, the size of the nano-crystal and its band gap can be controlled by adjusting the growth time after injection of the tellurium. The prepared CdTe NCs were characterized by absorption spectra, photoluminescence (PL), AFM and X-ray diffraction. Measured absorption maxima are at 521, 560, 600 and 603 nm corresponding to band gaps of 2.38, 2.21,2,07 and 2.04 eV respectively for growth times of 15, 30, 45 and 60 minutes. From the absorption data nano-crystal growth size saturates out after 45 minutes. AFM scanning of these materials indicate that the size of these particles is between 4 - 10 nm in diameter for growth time of 45 minutes. XD-ray diffraction indicates that these nano crystals are of cubic zinc blende phase. This paper will present growth and characterization data on CdTe nano crystals for various growth times.
机译:我们合成的CdTe纳米晶体(NCs)具有均匀的尺寸和良好的质量,其特征在于光致发光(PL),AFM和X射线衍射。在此生长过程中,CdTe纳米晶体的带隙在很大程度上取决于生长时间,而不取决于注入温度或有机配体浓度。这是非常有吸引力的,因为仅通过生长时间就可以容易地控制纳米晶体的尺寸,并且对于大规模合成是非常有吸引力的。在一个小时的时间内,溶液的颜色从绿黄色变为浅橙色,然后变为深橙色,最后从灰黑色变为黑色。这清楚地表明CdTe纳米晶体的不同尺寸(和不同的带隙)随着生长时间的逐渐增长。换句话说,可以通过调节碲注入后的生长时间来控制纳米晶体的尺寸及其带隙。通过吸收光谱,光致发光(PL),原子力显微镜和X射线衍射对制备的CdTe NCs进行了表征。在15、30、45和60分钟的生长时间,分别在521、560、600和603 nm处测得的吸收最大值分别对应于2.38、2.2、1、07和2.04 eV的带隙。从吸收数据来看,纳米晶体的生长尺寸在45分钟后达到饱和。这些材料的AFM扫描表明,对于45分钟的生长时间,这些颗粒的直径在直径4至10 nm之间。 XD射线衍射表明这些纳米晶体是立方锌混合相。本文将介绍CdTe纳米晶体在不同生长时间下的生长和表征数据。

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