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NaO-NbO-PO玻璃添加剂对铌酸钠陶瓷结构、介电和储能性能的影响。

Effect of the NaO-NbO-PO glass additive on the structure, dielectric and energy storage performances of sodium niobate ceramics.

作者信息

Benyounoussy S, Bih L, Muñoz F, Rubio-Marcos F, El Bouari A

机构信息

Laboratory of Physico-chemical of Applied Materials, Faculty of Sciences Ben M'Sik, Hassan II University, Casablanca, Morocco.

Materials and Processes Department, ENSAM Meknes, Moulay Ismail University, Meknes, Morocco.

出版信息

Heliyon. 2021 May 27;7(5):e07113. doi: 10.1016/j.heliyon.2021.e07113. eCollection 2021 May.

Abstract

A phosphate glass NaO-NbO-PO (NPP) is incorporated into NaNbO (NN) ceramics to examine its impact on the density, rearrangement of structural units, dielectric and energy storage features of the elaborated composites. The sodium niobate ceramic (NN) is prepared using the solid state process, whereas, the NaO-NbO-PO (NPP) glasses are produced using the method of conventional melt quenching. The glass (NPP) is added to the ceramic (NN) according to the composition (100-x) NN-xNNP; (x = 0, 2.5, 5, and 7.5 %wt). The developed composites are denoted as NN-Gx where x represents the content of glass in %wt. The appropriate sintering temperature for the glass-ceramic composites was measured based on the density measurements. It was found that with the addition of glass, their density was decreased and their fritting at lower temperatures was enhanced. The obtained SST for all composites is about 900 °C. After the densification stage, Raman spectroscopy, X-ray Diffraction, Granulo-laser analysis, and scanning electron microscopy are examined to study the structural approach and the morphology of sintered NN-Gx composites. The NN-G5 composite was found to have a fine grain microstructure that was uniform. The dielectric features of the composite revealed that at ambient temperature the NN-G5 had the greatest dielectric constant. The energy storage performance of the composite was investigated from the P-E plots and the parameters of energy storage. Based on the obtained results, it was concluded that incorporating up to 5% wt. of NNP glass in sodium niobate ceramics positively affects their dielectric and energy storage performances.

摘要

将磷酸盐玻璃NaO-NbO-PO(NPP)掺入铌酸钠(NN)陶瓷中,以研究其对所制备复合材料的密度、结构单元重排、介电和储能特性的影响。铌酸钠陶瓷(NN)采用固态工艺制备,而NaO-NbO-PO(NPP)玻璃则采用传统的熔体淬火法制备。根据(100-x)NN-xNNP的组成(x = 0、2.5、5和7.5 wt%)将玻璃(NPP)添加到陶瓷(NN)中。所制备的复合材料标记为NN-Gx,其中x代表玻璃的重量百分比含量。基于密度测量确定了玻璃陶瓷复合材料的合适烧结温度。发现随着玻璃的添加,它们的密度降低,并且在较低温度下的烧结得到增强。所有复合材料获得的烧结温度约为900℃。在致密化阶段之后,通过拉曼光谱、X射线衍射、颗粒激光分析和扫描电子显微镜来研究烧结后的NN-Gx复合材料的结构方法和形态。发现NN-G5复合材料具有均匀的细晶粒微观结构。复合材料的介电特性表明,在室温下NN-G5具有最大的介电常数。从P-E曲线和储能参数研究了复合材料的储能性能。基于所得结果得出结论,在铌酸钠陶瓷中掺入高达5 wt%的NNP玻璃对其介电和储能性能有积极影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb30/8176320/079d82cdccc9/gr1.jpg

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