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首页> 外文期刊>Journal of Applied Research and Technology >Influence of HCl on the NPs-CdSe synthesis prepared by the colloidal method
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Influence of HCl on the NPs-CdSe synthesis prepared by the colloidal method

机译:HCl对胶体法制备NPs-CdSe的影响

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Cadmium selenide nanoparticles (NPs-CdSe) were synthesized by colloidal route at room temperature and atmospheric pressure using cadmium chloride (CdCl2·2.5 hydrate) and elemental selenium (Se) as precursors. Sodium borohydride (NaBH4) was used as reducing agent to obtain Se2? ions and an aqueous solution with a NaOH and Penta sodium tripolyphosphate (STPP) was used to protect Cd2+ ions. To remove the by-products generated during the chemical reaction and to promote the precipitation of NPs-CdSe, a cleaning process with an aqueous solution of HCl was performed. The HCl volume was varied from 0.2 to 1.2 ml during the cleaning process to study its effects on CdSe synthesis. The crystalline structure was analyzed by inspection of the high-resolution transmission electron microscope (HR-TEM) and X-ray diffraction (XRD). This analysis showed that crystals of CdSe exhibit a face-centered cubic structure (FCC). The calculated crystallite size is 3.5 nm and increases to 4.5 nm as the HCl volume increases. The morphologies of the products were observed by SEM and TEM techniques. HRTEM images showed that NPs-CdSe synthetized to 0.8 ml are composed of a great number of homogeneous and smooth nanospheres which are not appreciable in SEM but are observable in TEM. By contrast, 0.2 and 1.2 ml HCl samples are comprised of a great deal of rods of compounds of Se mixed with CdSe spheres nanostructures. This work, which did not require the use of surfactants complexes or specials environment, is considered to have advantages over other works.
机译:以氯化镉(CdCl2·2.5水合物)和元素硒(Se)为前体,在室温和大气压下通过胶体途径合成了硒化镉纳米颗粒(NPs-CdSe)。用硼氢化钠(NaBH4)作还原剂得到Se2 +。离子和含有NaOH和五磷酸五钠五钠(STPP)的水溶液用于保护Cd2 +离子。为了去除在化学反应过程中产生的副产物并促进NPs-CdSe的沉淀,使用HCl水溶液进行了清洗。在清洗过程中,HCl的体积从0.2到1.2 ml不等,以研究其对CdSe合成的影响。通过检查高分辨率透射电子显微镜(HR-TEM)和X射线衍射(XRD)来分析晶体结构。该分析表明,CdSe晶体表现出面心立方结构(FCC)。计算出的微晶尺寸为3.5 nm,并随着HCl体积的增加而增加至4.5 nm。通过SEM和TEM技术观察产物的形态。 HRTEM图像显示,合成至0.8 ml的NPs-CdSe由大量均匀且光滑的纳米球组成,这些纳米球在SEM中并不明显,而在TEM中却可见。相比之下,0.2和1.2 ml的HCl样品由大量的Se化合物杆和CdSe球纳米结构混合而成。这项工作不需要使用表面活性剂配合物或特殊环境,被认为具有优于其他工作的优势。

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