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Optical, dielectric and photocatalytic properties of perovskite ZnTiO3 nanoparticle synthesized by sonochemical process

机译:Perovskite ZnTiO 3 纳米粒子的光学,介电和光催化性能,由SONOCHEMICAL方法合成

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The sonochemical method was employed for synthesizing perovskite zinc titanate nanopowders. The yield powders were calcined at 600-900°C for 2 h. High crystallinity phase of cubic ZnTiO was obtained at calcination temperature of 600°C while mixing phase of cubic and hexagonal was observed in the sample calcined at 700°C. For the samples calcined at 800 and 900°C, the hexagonal structure was dominant phase with a trace of rutile TiO and spinel ZnTiO phase. X-ray absorption near edge spectroscopy technique (XANES) was used to probe crystal and local structure of the synthesized powders. The samples calcined at 700°C exhibited the superior photocatalytic performance in decolorization of Rhodamine B dye under ultraviolet irradiation within 75 min. The dielectric permittivity and loss tangent of ZnTiO calcined at 700°C was found to be 20 and <;10. Effect of calcination temperature on structural, morphology, optical, dielectric properties and photocatalytic activity were also investigated and discussed.
机译:用SONOPEMICAL方法用于合成钙钛矿钛酸盐纳米粉末。将产粉粉末在600-900℃下煅烧2小时。在煅烧温度为600℃的煅烧温度下获得立方ZnTiO的高结晶度,同时在700℃下煅烧的样品中观察立方和六边形的混合相。对于在800和900℃下煅烧的样品,六边形结构是主要的阶段,痕量的金红石TiO和尖晶石ZnTiO相。边缘光谱技术(Xanes)附近的X射线吸收用于探测合成粉末的晶体和局部结构。在700℃下煅烧的样品在75分钟内在紫外线照射下在罗丹明B染料的脱色中表现出优异的光催化性能。发现在700℃下煅烧的ZnTiO的介电介电常数和损失正切为20和<; 10。还研究了煅烧温度对结构,形态,光学,电介质性能和光催化活性的影响。

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