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Optical characteristics of particles produced using electroerosion dispersion of titanium in hydrogen peroxide

机译:钛在过氧化氢中电腐蚀分散产生的颗粒的光学特性

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Titanium oxide particles are produced using electric-discharge dispersion of titanium in aqueous solution of hydrogen peroxide. Electron vacuum microscopy, X-ray diffraction, and diffuse reflection spectroscopy are used to study the morphology, composition, and optical characteristics of the erosion particles. It has been demonstrated that the particles consist of titanium and titanium oxides with different valences. The edge of the optical absorption is located in the UV spectral range. The band gap is 3.35 eV for indirect transitions and 3.87 eV for direct allowed transitions. The band gap decreases due to the relatively long heating in air at a temperature of 480-550A degrees C, so that powder oxide compositions can be obtained, the optical characteristics of which are similar to optical characteristics of anatase. The erosion products are completely oxidized to rutile after annealing in air at a temperature of 1000A degrees C.
机译:使用钛在过氧化氢水溶液中的放电分散体可生产氧化钛颗粒。电子真空显微镜,X射线衍射和漫反射光谱法用于研究侵蚀颗粒的形态,组成和光学特性。已经证明该颗粒由具有不同化合价的钛和钛氧化物组成。光吸收的边缘位于紫外光谱范围内。对于间接跃迁,带隙为3.35 eV;对于直接允许跃迁,带隙为3.87 eV。由于在空气中在480-550A℃的温度下相对较长的加热,带隙减小,因此可以获得粉末氧化物组合物,其光学特性类似于锐钛矿的光学特性。在空气中在1000A摄氏度的温度下退火后,腐蚀产物会完全氧化成金红石。

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