Ruddlesden-Popper型Sr2TiO4陶瓷的相结构、键特性和微波介电特性

Pub Date : 2023-07-24 DOI:10.3390/ma16145195
Jun Yang, Jinbiao Pang, Xiaofang Luo, Laiyuan Ao, Qiang Xie, Xing Wang, Hongyu Yang, Xianzhong Tang
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引用次数: 0

摘要

本文研究了Sr2TiO4陶瓷的相组成、键合特性和微波介电性能。通过XRD和Rietveld细化分析,在1425~1525℃下合成了纯四方Ruddlesden-Popper型Sr2TiO4陶瓷。同时,显微组织致密,无气孔,具有较高的烧结性和致密性。当烧结温度为1475℃时,可获得良好的微波介电性能,εr值为39.41,Q × f值为93,120 GHz。在理想的烧结条件下,外部因素最小,可以忽略。因此,内在因素被认为是决定微波介电性能的关键因素。根据P-V-L复合化学键理论计算,最大的键离子度和Sr-O键占键磁化率的比例表明,Sr-O键主要决定介电极化率。然而,Ti-O键显示出的晶格能量约为Sr-O键的3倍,这表明Sr2TiO4陶瓷的结构稳定性主要由Ti-O键决定,而Ti-O键在决定固有介电损耗方面至关重要。Sr2TiO4结构的热膨胀系数值也主要由Ti-O键决定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Phase Structure, Bond Features, and Microwave Dielectric Characteristics of Ruddlesden-Popper Type Sr<sub>2</sub>TiO<sub>4</sub> Ceramics.

Phase Structure, Bond Features, and Microwave Dielectric Characteristics of Ruddlesden-Popper Type Sr<sub>2</sub>TiO<sub>4</sub> Ceramics.

Phase Structure, Bond Features, and Microwave Dielectric Characteristics of Ruddlesden-Popper Type Sr<sub>2</sub>TiO<sub>4</sub> Ceramics.

Phase Structure, Bond Features, and Microwave Dielectric Characteristics of Ruddlesden-Popper Type Sr2TiO4 Ceramics.

This work studied the phase constitution, bond characteristics, and microwave dielectric performances of Sr2TiO4 ceramics. Based on XRD and Rietveld refinement analysis, pure tetragonal Ruddlesden-Popper type Sr2TiO4 ceramic is synthesized at 1425~1525 °C. Meanwhile, the microstructure is dense and without porosity, indicating its high sinterability and densification. Great microwave dielectric performances can be obtained, namely an εr value of 39.41, and a Q × f value of 93,120 GHz, when sintered at 1475 °C. Under ideal sintering conditions, the extrinsic factors are minimized and can be ignored. Thus, the intrinsic factors are considered crucial in determining microwave dielectric performances. Based on the P-V-L complex chemical bond theory calculation, the largest bond ionicity, and proportions to the bond susceptibility from Sr-O bonds suggest that Sr-O bonds mainly determine the dielectric polarizability. However, the Ti-O bonds show lattice energy about three times larger than Sr-O bonds, emphasizing that the structural stability of Sr2TiO4 ceramics is dominated by Ti-O bonds, and the Ti-O bonds are vital in determining the intrinsic dielectric loss. The thermal expansion coefficient value of the Sr2TiO4 structure is also mainly decided by Ti-O bonds.

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