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Microwave dielectric properties of barium substituted screen printed CaBi2Nb2O9 ceramic thick films

机译:钡取代筛网的微波介电性能印花Cabi2NB2O9陶瓷厚膜

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摘要

In the present study, Aurivillius-structured Ba2+ substituted CaBi2Nb2O9 (CBNO) ceramic powder was synthesized by co-precipitation method. The CBNO thick films were delineated by screen printing method on alumina substrates using co-precipitated ceramic powder. The overlay method was adopted to measure the microwave dielectric properties of prepared thick films. Single phase layered perovskite structure of the prepared thick films was confirmed by X-ray Diffraction. The effects of Ba2+ substitution on the surface morphology, bonding, and microwave dielectric properties of thick films were systematically presented. The maximum value of microwave dielectric constant for the CBNO thick films at 11.8 GHz is 15.6 for Ba2+ = 0.8 substitution. The shift in the stretching vibration modes of the Nb-O bond of NbO6 octahedron in the Raman spectra with a substitution of Ba2+ in CBNO was observed. The substitution of Ba2+ on A-site of CBNO improves the microwave dielectric properties of prepared thick films. This work may provide a new approach to enhance the microwave dielectric performance of Aurivillius-structured ceramic thick films.
机译:在本研究中,通过共沉淀法合成了Aurivillius结构的Ba2 +取代的Cabi2NB2O9(CBNO)陶瓷粉末。使用共沉淀的陶瓷粉末在氧化铝基材上筛选CBNO厚膜。采用覆盖方法测量制备的厚膜的微波介电性能。通过X射线衍射确认制备的厚膜的单相层钙钛矿结构。系统呈现了Ba2 +取代对表面形态,粘接和微波介电性能的影响。 11.8GHz的CBNO厚膜的微波介电常数的最大值为15.6,用于Ba2 + = 0.8取代。观察到在CBNO中取代Ba2 +的拉曼光谱中NBO6八面体的Nb-O键的拉伸振动模式的转变。 Ba2 +在CBNO的现场取代改善了制备的厚膜的微波介电性能。这项工作可以提供一种新方法来提高Aurivillius结构陶瓷厚膜的微波介电性能。

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