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Synthesis, Characterization, and Low Temperature Sintering of Nanostructured BaWO4for Optical and LTCC Applications

机译:纳米结构Bawo4对于光学和LTCC应用的合成,表征和低温烧结

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摘要

Synthesis of nano-BaWO4 by a modified combustion technique and its suitability for various applications are reported. The structure and phase purity of the sample analyzed by X-ray diffraction, Fourier transform Raman, and infrared spectroscopy show that the sample is phase pure with tetragonal structure. The particle size from the transmission electron microscopy is 22 nm. The basic optical properties and optical constants of the nano BaWO4 are studied using UV-visible absorption spectroscopy which showed that the material is a wide band gap semiconductor with band gap of 4.1 eV. The sample shows poor transmittance in ultraviolet region while maximum in visible-near infrared regions. The photoluminescence spectra show intense emission in blue region. The sample is sintered at low temperature of 810°C, without any sintering aid. Surface morphology of the sample is analyzed by scanning electron microscopy. The dielectric constant and loss factor measured at 5 MHz are 9 and 1.56×10-3. The temperature coefficient of dielectric constant is −22 ppm/°C. The experimental results obtained in the present work claim the potential use of nano BaWO4 as UV filters, transparent films for window layers on solar cells, antireflection coatings, scintillators, detectors, and for LTCC applications.
机译:据报道通过改进的燃烧法及其各种应用适应性纳米BaWO4的合成。样品的结构和相纯度通过X-射线衍射仪,傅立叶变换拉曼光谱,和红外光谱表明,该样品是纯相的具有四方结构。从透射电子显微镜的粒径是22纳米。纳米BaWO4的基本的光学性能和光学常数是使用紫外 - 可见吸收光谱,其显示该材料是宽带隙半导体与4.1电子伏特的带隙的影响。该示例显示了透射率差在紫外区域,同时在最大可见 - 近红外区域。光致发光光谱显示在蓝色区域的强发射。将样品在810℃的低温下烧结,而没有任何烧结助剂。样品的表面形态用扫描电子显微镜分析。在5MHz测量的介电常数和损耗因子是9和1.56×10-3。介电常数的温度系数为-22 PPM /℃。目前的工作,如权利要求中所获得的潜在用途纳米BaWO4作为UV过滤器,用于在太阳能电池上,抗反射涂层,闪烁体,探测器窗口层的透明膜,以及用于LTCC应用的实验结果。

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