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Inorganic salt-induced phase control and optical characterization of cadmium sulfide nanoparticles

机译:无机盐诱导的硫化镉纳米粒子的相控和光学表征

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摘要

Phase-controlled synthesis of CdS nanoparticles from zinc-blende to wurtzite has been successfully realized by an inorganic salt-induced process with no use of surfactants or other ligands in an ultrasound-assisted microwave synthesis system. Pure zinc-blende CdS nanoparticles were produced without adding NaCl, while mixed zinc-blende and wurtzite nanoparticles were obtained by adding NaCl/Cd2+ molar ratios below 1, and pure wurtzite nanoparticles were produced at a molar ratio of 1. The energy bandgap (E-g) of the CdS nanoparticles calculated from optical absorption spectra increases as the phase transformation from zinc-blende to wurtzite occurs. Additionally, the CdS nanoparticles showed a 489 nm band-edge emission without adding NaCl, and a 501 nm emission when the molar ratios of NaCl to Cd2+ are 0.25, 0.5 and 1. It was found that the phase transformation originates from the effect of the halide ion Cl-. We also found that some other halide ions such as Br- and I- can induce the phase transformation. It is shown that the phase, size and optical properties of the anisotropic nanoparticles can be well tuned by varying the concentration of the halide ions.
机译:通过无机盐诱导的方法,在超声辅助微波合成系统中不使用表面活性剂或其他配体,已成功实现了从闪锌矿到纤锌矿的CdS纳米粒子的相控合成。在不添加NaCl的情况下生产纯的闪锌矿CdS纳米颗粒,而通过添加摩尔比小于1的NaCl / Cd2 +摩尔比获得混合的锌-亮锌矿和纤锌矿纳米颗粒,并且以1的摩尔比生产纯纤锌矿纳米颗粒。从光吸收光谱计算得到的CdS纳米粒子的数量会随着从闪锌矿到纤锌矿的相变而增加。此外,CdS纳米粒子在不添加NaCl的情况下显示489 nm的带边发射,在NaCl与Cd2 +的摩尔比为0.25、0.5和1时显示501 nm的发射。卤离子Cl-。我们还发现,其他一些卤离子,例如Br​​-和I-可以诱导相变。结果表明,通过改变卤离子的浓度,可以很好地调节各向异性纳米粒子的相,大小和光学性质。

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