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Rare Earth Aurivillius Oxides: Synthesis, electrical properties and renewable energy applications

机译:稀土Aurivillius氧化物:合成,电性能和可再生能源应用

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There is a huge amount of pollution as well as the critical waste management issues create serious health problems caused by the lead-based ceramics for humans, marine organisms. Several countries are on a strict propaganda to implement the restrictions towards the utilization of lead as a candidate for device engineering. So now the focus shifted towards finding an alternative lead-free piezoelectric material which gives similar type of properties as compared to lead-based piezoelectric materials. In this report a polycrystalline ceramic having chemical formula Ba (Bi0.9Dy0.1) Nb2O9 (BBDNO termed further). The dielectric constant and loss of the ceramics have been examined for a frequency sweep 1 kHz to 1 MHz at different temperatures. The microstructure of the natural sample surface reveals that the presence of grain of various size and EDS spectra confirms all the elements are present without any impurity. The conductivity studies revealed that the experimental data follows the Jonscher's power law. The impedance spectroscopy suggests that the prepared sample has non-Debye type of relaxation. Further, the pellet was coated with silver electrode on opposite sides and utilized to harvest the biomechanical pressure imparted from finger tapping.
机译:有大量的污染以及关键的废物管理问题会产生严重的健康问题,由人类,海洋生物的铅陶瓷引起的严重健康问题。有几个国家是严格宣传,以实施利用铅作为设备工程候选人的限制。因此,现在,与基于铅的压电材料相比,焦点朝向找到替代的无铅压电材料,其提供了类似类型的性能。在本报告中,具有化学式BA的多晶陶瓷(BI 0.9 dy 0.1 )NB. 2 O. 9 (BBDNO进一步称为)。已经在不同温度下检查了频率扫描1kHz至1MHz的频率常数和损失。天然样品表面的微观结构表明,各种尺寸和EDS光谱的存在证实了所有元素的存在而没有任何杂质。导电性研究表明,实验数据遵循Jonscher的权力法。阻抗光谱表明制备的样品具有非德德义型弛豫。此外,将沉淀物在相对侧上用银电极涂覆,并利用以收获从手指敲击赋予的生物力学压力。

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