硒化汞胶体量子点的合成及其性质

O. Y. Tsvetkova, N. D. Zhukov, T. D. Smirnova, S. N. Shtykov
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摘要

提出了以氧化汞为前驱体合成硒化汞胶体量子点的方法。所提出的方法的特点是在反应混合物中使用毒性较小的成分-氧化汞。透射电镜法建立了平均直径为5-6 nm的量子点形状。给出了合成纳米颗粒尺寸分布的直方图。合成的纳米颗粒的一个重要性质是通过x射线衍射分析确定的晶体结构。所合成的纳米晶体的性质与文献数据一致。通过x射线微量分析控制纳米颗粒的元素组成。确定了量子点的化学组成对应于汞元素的化学计量比:Se = 0.98: 1 000。此外,从x射线中可以看出,硅和碳化合物中的氧含量已经确定,基于hgse的量子点不包含氧化的痕迹。量子点的光学特性取决于纳米粒子的大小。当平均直径不超过10 nm时,硒化汞颗粒呈单晶结构,具有带内吸收,其光谱能量分布受到量纲量化的影响。从吸收光谱可以看出,合成的纳米颗粒具有红外吸收带,波长范围可达40微米。合成的量子点不具有发光特性,根据文献数据,这与小纳米颗粒(5-6 nm)激子形成的可能性低有关。
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Synthesis and some properties of colloidal quantum dots of mercury selenide
The synthesis of colloidal quantum dots of mercury selenide using mercury oxide as a precursor is proposed. The proposed method is characterized by the use of a less toxic component in the reaction mixture - mercury oxide. The transmission electron microscopy method established an average diameter of 5–6 nm and the shape of quantum dots. A histogram of the size distribution of synthesized nanoparticles is presented. An important property of the synthesized nanoparticles is the crystal structure established by X-ray diffraction analysis. The established properties of the synthesized nanocrystals coincide with the literature data. The elemental composition of the nanoparticles was controlled by X-ray microanalysis. It is established that the chemical composition of quantum dots corresponds to the stoichiometric ratio of Hg elements : Se = 0,98 : 1,00. In addition, it follows from the X-ray that the oxygen content has been identified in silicon and carbon compounds, HgSe-based quantum dots do not contain traces of oxidation. The optical properties of quantum dots depend on the size of the nanoparticles. If the average diameter does not exceed 10 nm, mercury selenide particles are characterized by a monocrystalline structure with intraband absorption, the spectral energy distribution of which is subjected to dimensional quantization. As can be seen from the absorption spectra, the synthesized nanoparticles are characterized by absorption bands in the IR region, in the wavelength range up to 40 microns. The synthesized quantum dots do not possess luminescent properties, which, according to the literature data, is associated with a low probability of exciton formation for small nanoparticles (5–6 nm).
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