Study of electrophysical properties of beryllium ceramics with the addition of microand nanoparticles of titanium dioxide

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
A.V. Pavlov, A.M. Zhilkashinova, S.S. Gert, N. Magazov, Zh.S. Turar, A.B. Nabioldina
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Abstract

In the present paper the research results of influence of nanoparticles TiO2 additions in the range 0,1 — 2,0 wt. % on electrophysical properties of oxide-beryllium ceramics (BeO + TiO2) made of micropowders are presented. The electrophysical characteristics of synthesized ceramics modified with 30 wt. % TiO2 microand nanoparticles in the electric current frequency range of 100 Hz — 100 MHz were studied by the total complex resistance method (impedance). It is known that the introduction of TiO2 addition to the BeOceramics after heat treatment in a reducing atmosphere is accompanied by a significant increase in electrical conductivity and the ability to absorb electromagnetic radiation in a wide range of frequencies. According to the results of the studies it was found that the addition of nanoparticles TiO2 into the (BeO + TiO2)-ceramics significantly reduces its static electrical resistance in comparison with the serial sample, and the specific conductivity of such ceramics significantly increases at high frequencies ~ 107 Hz. The addition of TiO2 nanoparticles significantly increases the dielectric losses of the sample sintered in the temperature range 1530 — 1550 °C. The values of real and imaginary parts of dielectric permittivity of such ceramics and the tangent of the angle of dielectric loss are two times higher compared to the serial sample — BT-30 (B — beryllium, T — titanium). The obtained results are unique in their kind, due to the experiment with a rare and strategically important material — beryllium oxide and the possibility of synthesizing new nanostructures based on it.
添加二氧化钛微颗粒和纳米颗粒的铍陶瓷电物理性能研究
本文介绍了在0.1 ~ 2.0 wt. %范围内添加纳米TiO2对微粉制备的氧化铍陶瓷(BeO + TiO2)电物理性能影响的研究结果。采用总复电阻法(阻抗法)研究了30 wt. % TiO2纳米粒子改性合成陶瓷在100 Hz ~ 100 MHz电流频率范围内的电物理特性。众所周知,在还原性气氛中热处理后的beocerics中加入TiO2添加剂会显著提高其导电性和在宽频率范围内吸收电磁辐射的能力。根据研究结果发现,在(BeO + TiO2)-陶瓷中加入纳米TiO2与系列样品相比,显著降低了其静电电阻,并且在高频~ 107 Hz时,该陶瓷的比电导率显著提高。在1530 ~ 1550℃范围内,TiO2纳米粒子的加入显著增加了烧结样品的介电损耗。与系列样品BT-30 (B -铍,T-钛)相比,该陶瓷的介电常数实部和虚部以及介电损耗角的正切值提高了2倍。所获得的结果在同类中是独一无二的,因为实验中使用了一种罕见的、具有重要战略意义的材料——氧化铍,并有可能在此基础上合成新的纳米结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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