首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Millimeter-wave absorption properties of BaTiO3/Co3O4 composite powders controlled by high-frequency resonances of permittivity and permeability
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Millimeter-wave absorption properties of BaTiO3/Co3O4 composite powders controlled by high-frequency resonances of permittivity and permeability

机译:BATIO3 / CO3O4复合粉末的毫米波吸收性能通过介电常数和渗透率的高频共振控制

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Development of high-efficiency millimeter-wave-absorbing materials is important to attenuate electromagnetic pollution occurring due to rapid development of information technology and to defend against radar detection for military stealth technology. In this study, BaTiO3 (BTO)/Co3O4 millimeter-wave absorption composite powders with hierarchical microstructures were successfully prepared by the sol-gel method. The results indicated that the Co3O4 phase was preferentially formed at low temperature of 800-900 degrees C and BTO was formed at high temperature of 1000-1100 degrees C. A composite with perfect crystallization of both constituent phases and uniform microstructure was obtained when its molar ratio of BTO/Co approached 1 and the sintering temperature was around 900 degrees C. Both permittivity and permeability resonances were generated typically in composites, due to which epsilon(r) and (r) values were relatively closer and epsilon and were high at high-frequency range of 30-40 GHz. In the composite with molar ratio of BTO/Co of 4/6 sintered at 900 degrees C, double absorption peaks with appropriate frequency difference were generated, and absorption intensity from -40 to -50 dB and bandwidth of 5 GHz were successfully obtained with sample matching thickness of 1.8 mm around 35 GHz. It completely covered the atmosphere window at 35 GHz, which has the strongest transparency of millimeter wave. This composite can be used as a highly efficient absorption material of millimeter-wave rays.
机译:高效毫米波吸收材料的发展对于由于信息技术的快速发展而导致的电磁污染以及防御军事隐形技术的雷达检测是重要的。在本研究中,通过溶胶 - 凝胶法成功制备具有分层微结构的BATIO3(BTO)/ CO3O4毫米波吸收复合粉末。结果表明,在800-900℃的低温下优先形成CO 3 O4相,在1000-1100℃的高温下形成BTO。当其摩尔时,具有完美结晶的复合材料和均匀的微观结构。 BTO / CO接近的比例1和烧结温度约为900℃。通常在复合材料中产生介电常数和渗透性共振,因为ε(R)和(R)值相对较近,ε高,高 - 频率范围为30-40 GHz。在900℃下烧结的BTO / CO的摩尔比的复合材料中,产生具有适当频率差的双吸收峰,并成功获得-40至-50dB的吸收强度和5GHz的带宽匹配厚度为1.8毫米35 GHz。它完全覆盖了35 GHz的大气窗口,这具有毫米波最强的透明度。该复合材料可用作毫米波射线的高效吸收材料。

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