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Barium-Strontium Titanate/Porous Glass Structures for Microwave Applications

机译:微波应用的钡锶/多孔玻璃结构

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摘要

Based on porous silicate glasses obtained by ion exchange, glass-ceramic materials containing a solid solution of barium-strontium titanate with a dielectric constant of more than 100 at microwaves, were synthesized for the first time. Glass-ceramic structures were studied using X-ray diffraction, secondary electron microscopy, Mössbauer spectroscopy and porometry methods. Electrical characteristics such as permittivity and losses of as-prepared and annealed in oxygen medium samples were also investigated at microwaves. It was shown that the method of obtaining porous glasses, due to ion exchange between KFeSi glass and LiNO3 and NaNO3 melts, allows for controlling a wide range of pore sizes and makes it possible to form glass porous structures with pores of the required size. The efficiency of the process of filling a porous matrix with a ferroelectric filler was investigated and the average depth of its penetration was estimated. It was shown that annealing glass-ceramic structures in an oxygen environment had a positive effect on their structural and electrical characteristics. Glass-ceramic structures demonstrate a significant increase in permittivity and a decrease in losses after high-temperature treatment in oxygen.
机译:基于通过离子交换获得的多孔硅酸盐玻璃,首次合成含有含有大于100多于100的介电常数的固体溶液的玻璃陶瓷材料,首次合成。使用X射线衍射,二次电子显微镜,Mössbauer光谱和孔径法研究玻璃陶瓷结构。还在微波上研究了在氧培养基样品中制备的介电常数和损失和退火的电气特性。结果表明,由于Kfesi玻璃和LINO3和纳米3和纳米3熔体之间的离子交换而获得多孔玻璃的方法,允许控制各种孔径并使得可以形成具有所需尺寸的孔的玻璃多孔结构。研究了用铁电填料填充多孔基质的方法的效率,估计其渗透的平均深度。结果表明,氧环境中的退火玻璃结构对其结构和电气特性具有积极影响。玻璃陶瓷结构表明渗透中高温处理后介电常数的显着增加和降低。

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