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首页> 外文期刊>Materials science in semiconductor processing >Solvothermal synthesis of copper cadmium sulphide (CuCdS2) nanoparticles and its structural, optical and morphological properties
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Solvothermal synthesis of copper cadmium sulphide (CuCdS2) nanoparticles and its structural, optical and morphological properties

机译:硫化铜镉(CUCDS2)纳米粒子及其结构,光学和形态学性能的溶剂质合成

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Copper cadmium sulphide (CuCdS2) nanoparticles via solvothermal syntheses in ethylene glycol (EG) optimized with different reaction times at a constant temperature of 180 degrees C. The optimized reaction time was adopted to syntheses CuCdS2 particles with oleic acid (OLA) and water (WT). X-ray diffraction patterns confirmed that, all the synthesized CuCdS2 nanoparticles possessed hexagonal structure despite the use of different solvents, however, the high intensity plane was found to be varied. Crystallinity of the nanoparticles was improved with reaction time and the calculated crystallite size increased from 12 to 27 nm. The estimated crystallite sizes of CuCdS2 nanoparticles synthesized with OLA and WT were higher than EG mediated synthesis. Raman analyses confirmed the vibrational modes attributed to the CuCdS2 nanoparticles. UV-visible absorption spectra showed that the nanoparticles had a wide range of absorption up to mid-visible region. Absorption enhancement in the near infrared region is ascribed to localized surface plasmon resonance. Band gap values of the synthesized nanoparticles found to be reduced from 2.05 eV to 1.87 eV as the gradual incorporation of copper. Photoluminescence spectra exhibit emissions in blue and green bands which confirmed the presence of defects in CuCdS2 nanoparticles. Electron microscopy images revealed that morphologies of the nanoparticles are modified into nanorods from spherical shape. In addition, improvement in the crystallinity was further confirmed using selected area diffraction pattern. Passivation by OLA lead the nanoparticles to attain plate like morphology, however, WT nanoparticles had diverse morphology. The growth process was slower in EG than OLA and WT which lead to orient in low surface energy plane. The plausible mechanism involved in the formation and evolution of CuCdS2 nanoparticles is discussed.
机译:硫化镉(CUCDS2)纳米颗粒通过溶液合成的乙二醇(例如)优化,在180℃的恒定温度下用不同的反应时间进行优化。采用优化的反应时间用油酸(OLA)和水合成CUCDS2颗粒(WT) )。 X射线衍射图案证实,尽管使用不同的溶剂,所以所有合成的CUCDS2纳米颗粒具有六边形结构,但发现高强度平面变化。随着反应时间改善纳米颗粒的结晶度,并且计算的微晶尺寸从12-27nm增加。用OLA和WT合成的CUCDS2纳米颗粒的估计的微晶尺寸高于例如介导的合成。拉曼分析证实归因于CUCDS2纳米颗粒的振动模式。 UV可见吸收光谱表明,纳米颗粒具有广泛的吸收,直到中间可见区域。近红外区域的吸收增强归因于局部表面等离子体共振。发现合成纳米颗粒的带隙值从2.05 eV降至1.87eV作为铜的逐渐掺入。光致发光光谱表现出蓝色和绿色带中的排放,证实了CUCDS2纳米颗粒中存在缺陷。电子显微镜图像显示,纳米颗粒的形态被改变为来自球形的纳米棒。另外,使用选定的区域衍射图案进一步证实结晶度的改善。 OLA的钝化引导纳米颗粒以相似的形态获得板材,然而,WT纳米颗粒具有不同的形态。生长过程比OLA和WT较慢,导致低表面能量平面定向。讨论了CUCDS2纳米粒子的形成和演化中涉及的合理机制。

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