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Synthesis and Optical Properties of Cobalt-Modified Titanium Oxide Films

机译:钴改性氧化钛膜的合成与光学性质

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摘要

Properties of polycrystalline TiO2 films modified by magnetron sputtering of cobalt followed by pulsed photon-irradiation processing in air are investigated by methods of X-ray phase analysis, raster electron microscopy, atomic force microscopy, magnetic force microscopy, and IR spectroscopy. Formation of a nanocrystalline (with a grain size of similar to 50 nm) film consisting of cobalt and titanium oxides the surface of which exhibits magnetic properties is established in the process of modification. The IR reflectance spectra obtained at different angles of incidence in the region between 500 and 600 cm(-1) reveal the presence of two bands belonging to transverse modes (TO) and two corresponding bands belonging to the longitudinal modes (LO). These bands are indicative of formation of Co3O4 with spinel structure. Investigation of optical absorption suggests a predominant existence of phases characterized by direct interband transitions with energies of 1.43 and 1.83 eV for Co3O4, along with a transition with energy of 2.65 eV for cubic phase of CoO, in the films.
机译:通过X射线相分析,光栅电子显微镜,原子力显微镜,磁力显微镜和IR光谱研究,通过磁控溅射改性的多晶TiO2膜改性的多晶TiO2薄膜的性质。在改性过程中建立了由钴和氧化物组成的纳米晶(具有与50nm的晶粒尺寸相似的晶粒尺寸)的形成,其表面是在改性过程中表现出磁性的表面。在500至600cm(-1)之间的区域的不同入射角获得的IR反射光谱揭示了属于横向模式(至)的两个带和属于纵向模式(LO)的两个相应带。这些带状指示用尖晶石结构形成CO3O4。光学吸收的研究表明,通过为CO 3 O 4的能量直接间带转变的相对于CO 3 O 4的能量,以及在薄膜中具有2.65eV的能量的过渡。

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