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Synthesis of mercaptopropionic acid capped CdS nanoparticles

机译:巯基丙酸包覆的CdS纳米粒子的合成

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Results of the studies on the preparation and characterization of CdS nanoparticles using aqueous solutions of precursors in presence of Mercaptopropionic acid as a capping agent, is reported in this article. Aqueous solutions of Cadmium acetate and Sodium sulphide were used as precursors. The optical absorption edge shifting to smaller values than that for the bulk CdS indicated that the particles formed are in the nanometer size regime. The band gaps were calculated from the optical absorption studies and particle sizes were estimated from the band gap values using the relationship between particle size and band gap under effective mass approximation (EMA). Particles as small as 4.5 nm could be prepared by varying the concentration of the stabilizer, at a constant precursor concentration. Stability of the CdS particles formed were monitored for 15 days and good stability could be observed even at very low stabilizer concentrations. The particle size increases with decrease in stabilizer concentration. The increase is small at higher concentration region and at lower concentrations the increase is rapid with decreasing stabilizer concentration. Efficient capping can be achieved by the proper choice of the stabilizer concentration for a given precursor concentration. Higher precursor concentrations need higher stabilizer concentrations.,fraction (XRD) studies agree well with those estimated from the band gap values.
机译:本文报道了在巯基丙酸存在下使用前体水溶液作为封端剂制备和表征CdS纳米粒子的研究结果。乙酸镉和硫化钠的水溶液用作前体。与本体CdS相比,光吸收边缘偏移到较小的值表明所形成的颗粒处于纳米尺寸范围内。根据光学吸收研究计算带隙,并使用有效质量近似(EMA)下的粒径与带隙之间的关系,根据带隙值估算粒径。通过以恒定的前体浓度改变稳定剂的浓度,可以制备小至4.5 nm的颗粒。监测形成的CdS颗粒的稳定性15天,即使在非常低的稳定剂浓度下也可以观察到良好的稳定性。粒度随着稳定剂浓度的降低而增加。在较高浓度区域,增加很小,而在较低浓度下,随着稳定剂浓度降低,增加迅速。对于给定的前体浓度,可以通过适当选择稳定剂浓度来实现有效的封端。较高的前体浓度需要较高的稳定剂浓度。分数(XRD)研究与根据带隙值估算的结果非常吻合。

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