单相体系中优势核和魔术大小CdS纳米颗粒的观察。

Xiaobo Nie, Yanming Chen
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引用次数: 0

摘要

以乙酸镉和硫脲为前驱体,油酸钠为表面活性剂,在不同乙酸镉浓度下,在无水乙醇中合成了硫化镉纳米颗粒。镉(Cd)前驱体浓度对CdS NPs的成核生长有很大影响。在Cd前驱体浓度为0.1 mmol·L-1的极稀溶液中,观察到在310 nm和350 nm处有两个明显的吸收峰,形成了重叠的成核和生长。在很长的反应时间内,直到10小时,无与伦比的成核占主导地位。原子核和由此产生的神奇大小的CdS NPs可以用作制备大小和形状可控的纳米颗粒的种子。相反,在高镉前体浓度(5 mmol·L-1)时,成核和生长分离。只有一个第一激子吸收峰出现在440 nm处,代表了常规CdS NPs的生长。采用透射电镜(TEM)、x射线粉末衍射(XRD)、紫外-可见(UV-Vis)吸收和光致发光(PL)光谱等技术对CdS NPs的形貌、晶体结构和光学性能进行了表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Observation of Dominant Nuclei and Magic-Sized CdS Nanoparticles in a Single-Phase System.

Cadmium sulfide nanoparticles (CdS NPs) were synthesized by using cadmium acetate and thiourea as precursors and sodium oleate as the surfactant under different cadmium acetate concentrations in anhydrous ethanol. Cadmium (Cd) precursor concentration greatly affected the nucleation-growth of CdS NPs. In extremely dilute solution with a Cd precursor concentration of 0.1 mmol · L-1, an overlapped nucleation and growth corresponding to two pronounced absorption peaks at 310 nm and 350 nm, respectively, was observed. Unparalleled nucleation was dominant within very long reaction time until 10 hours. The nuclei and the resulting magic-sized CdS NPs may be used as seeds to prepare size and shape controllable nanoparticles. On the contrary, at a high Cd precursor concentration (5 mmol · L-1), nucleation and growth were separated. Only one first exciton absorption peak standing for the growth of regular CdS NPs appeared at 440 nm. Many techniques including transmission electron microscopy (TEM), X-ray powder diffraction (XRD), ultraviolet-visible (UV-Vis) absorption and photoluminescence (PL) spectrometers were applied to characterize the morphology, crystalline structure, and optical properties of CdS NPs.

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来源期刊
Journal of nanoscience and nanotechnology
Journal of nanoscience and nanotechnology 工程技术-材料科学:综合
自引率
0.00%
发文量
0
审稿时长
3.6 months
期刊介绍: JNN is a multidisciplinary peer-reviewed journal covering fundamental and applied research in all disciplines of science, engineering and medicine. JNN publishes all aspects of nanoscale science and technology dealing with materials synthesis, processing, nanofabrication, nanoprobes, spectroscopy, properties, biological systems, nanostructures, theory and computation, nanoelectronics, nano-optics, nano-mechanics, nanodevices, nanobiotechnology, nanomedicine, nanotoxicology.
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