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Optical properties of ZnO thin films dispersed with noble metal nanoparticles synthesized by sol-gel method

机译:溶胶-凝胶法合成贵金属纳米颗粒分散的ZnO薄膜的光学性质

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Zinc Oxide (ZnO) is an inexpensive n-type semiconductor having a direct band gap of 3.3eV with a large exciton binding energy of 60meV. Noble metal nanoparticles show a surface plasmon resonance in the visible region due to collective oscillations of electrons at the surface of metal nanoparticles. The unique features in the composite system of dielectrics-metal nanoparticles have potential applications in optoelectronic devices such as transparent conductive films, solar cells, photocatalysts and so on. In this study, ZnO thin films dispersed with Ag or Au nanoparticles were synthesized using a sol-gel technique. X-ray diffraction peaks of ZnO films exhibited a pattern corresponding to the hexagonal wultzite structure. In the TEM analysis of ZnO-Au composite films, spherical Au nanoparticles were observed within the ZnO crystalline matrix. The distribution of the diameter of Au nanoparticles was centered at around 20nm and broadened with the half width of about 20nm. In the ZnO-Ag composite films, Ag nanoparticles grow larger as the annealing temperature becomes higher and various shape of Ag precipitations like triangular and square plates were observed in ZnO-Ag (50:50) composite films. The optical absorption peaks were observed at 580nm and 410nm due to the surface plasmon resonance of gold and silver nanoparticles, respectively. The absorption spectra were analyzed using a typical effective medium approximation of Maxwell-Garnett model and good fitting was obtained for a ZnO-Au composite film assuming spherical Au nanoparticle. The spectra were discussed relating with the size and shape of the nanoparticles, and the refractive index of the matrix.
机译:氧化锌(ZnO)是一种便宜的n型半导体,具有3.3eV的直接带隙和60meV的大激子结合能。贵金属纳米颗粒由于电子在金属纳米颗粒表面的集体振荡而在可见光区域显示表面等离子体共振。电介质-金属纳米粒子的复合系统中的独特功能在光电设备中具有潜在的应用,例如透明导电膜,太阳能电池,光催化剂等。在这项研究中,使用溶胶-凝胶技术合成了分散有Ag或Au纳米颗粒的ZnO薄膜。 ZnO膜的X射线衍射峰显示出与六方纤锌矿结构相对应的图案。在ZnO-Au复合膜的TEM分析中,在ZnO晶体基质中观察到球形Au纳米颗粒。 Au纳米颗粒的直径分布集中在约20nm处,并以约20nm的半宽度变宽。在ZnO-Ag复合膜中,随着退火温度的升高,Ag纳米粒子的尺寸增大,并且在ZnO-Ag(50:50)复合膜中观察到各种形状的Ag沉淀物,如三角形和正方形板状。由于金和银纳米粒子的表面等离子体共振,分别在580nm和410nm处观察到光吸收峰。使用Maxwell-Garnett模型的典型有效介质近似值分析吸收光谱,并假设球形Au纳米颗粒对ZnO-Au复合膜具有良好的拟合性。讨论了与纳米颗粒的大小和形状以及基质的折射率有关的光谱。

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