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Microwave Assisted Processing of Sm(Zn_(0.5)Ti_(0.5))O_3 and ZnO-TiO_2Dielectric Resonators

机译:SM微波辅助加工(Zn_(0.5)Ti_(0.5))O_3和ZnO-TiO_2DI电谐振器

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Dielectric resonators are widely used as components of microwave resonant cavities with high dielectric constant, high quality factor and low temperature dependent resonant frequency. Recent advances in the synthesis of materials find several methods of preparation that includes microwave processing. It is possible to use the microwave for the synthesis of materials in two ways. Once the calcination of the required material is performed with conventional furnace, the microwave assisted sintering can be used for more densification. The other way is to directly use the microwave assisted process for obtaining the densified pellets from the stoichio-metrically mixed starting reagents. In this paper, we report the synthesis of Sm(Zn_(0.5)Ti_(0.5))O_3 and ZnO-TiO_2 using conventional sintering, microwave assisted sintering and microwave assisted synthesis. Phase formation was observed with XRD and surface morphology was observed using AFM. Microwave dielectric properties of all these systems were obtained using Hakki-Coleman method and cavity resonance method. The paper analyzes the variation between the microwave dielectric property and surface morphology of the above two systems synthesized by the three different routes.
机译:介电谐振器广泛用作微波谐振腔的部件,具有高介电常数,高质量因子和低温依赖性谐振频率。材料合成的最新进展发现了几种包括微波处理的制备方法。可以以两种方式使用微波以合成材料。一旦用常规炉子进行所需材料的煅烧,微波炉辅助烧结可用于更致密化。另一种方法是直接使用微波辅助方法,从而从STOICHIO-统计的起始试剂中获得致密的粒料。在本文中,我们通过常规烧结,微波辅助烧结和微波辅助合成来报告SM(Zn_(0.5)Ti_(0.5))O_3和ZnO-TiO_2的合成。使用XRD观察相形成,使用AFM观察表面形态。使用Hakki-Coleman方法和腔共振方法获得所有这些系统的微波介电性能。本文分析了三种不同途径合成的上述两种系统的微波介电性能和表面形态之间的变化。

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