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高熵无铅钙钛矿BiKBaSrCaTiO粉末及相关陶瓷:合成、加工与电学性能

High-Entropy Lead-Free Perovskite BiKBaSrCaTiO Powders and Related Ceramics: Synthesis, Processing, and Electrical Properties.

作者信息

Surdu Vasile-Adrian, Marinică Mariana-Andreea, Pătru Roxana-Elena, Oprea Ovidiu-Cristian, Nicoară Adrian Ionuț, Vasile Bogdan Ștefan, Trușca Roxana, Ianculescu Adelina-Carmen

机构信息

Department of Science and Engineering of Oxide Materials and Nanomaterials, Faculty of Chemical Engineering and Biotechnologies, National University of Science and Technology Politehnica Bucharest, Gheorghe Polizu 1-7, 011061 Bucharest, Romania.

National Institute for Materials Physics, Atomistilor 405A, 077125 Magurele, Romania.

出版信息

Nanomaterials (Basel). 2023 Nov 19;13(22):2974. doi: 10.3390/nano13222974.

Abstract

A novel high-entropy perovskite powder with the composition BiKBaSrCaTiO was successfully synthesized using a modified Pechini method. The precursor powder underwent characterization through Fourier Transform Infrared Spectroscopy and thermal analysis. The resultant BiKBaSrCaTiO powder, obtained post-calcination at 900 °C, was further examined using a variety of techniques including X-ray diffraction, Raman spectroscopy, X-ray fluorescence, scanning electron microscopy, and transmission electron microscopy. Ceramic samples were fabricated by conventional sintering at various temperatures (900, 950, and 1000 °C). The structure, microstructure, and dielectric properties of these ceramics were subsequently analyzed and discussed. The ceramics exhibited a two-phase composition comprising cubic and tetragonal perovskites. The grain size was observed to increase from 35 to 50 nm, contingent on the sintering temperature. All ceramic samples demonstrated relaxor behavior with a dielectric maximum that became more flattened and shifted towards lower temperatures as the grain size decreased.

摘要

采用改进的佩琴尼法成功合成了一种组成为BiKBaSrCaTiO的新型高熵钙钛矿粉末。前驱体粉末通过傅里叶变换红外光谱和热分析进行了表征。在900℃煅烧后得到的BiKBaSrCaTiO粉末,进一步使用包括X射线衍射、拉曼光谱、X射线荧光、扫描电子显微镜和透射电子显微镜在内的多种技术进行了检测。通过在不同温度(900、950和1000℃)下的常规烧结制备了陶瓷样品。随后对这些陶瓷的结构、微观结构和介电性能进行了分析和讨论。这些陶瓷呈现出由立方和四方钙钛矿组成的两相结构。观察到晶粒尺寸从35纳米增加到50纳米,这取决于烧结温度。所有陶瓷样品都表现出弛豫行为,随着晶粒尺寸减小,介电最大值变得更加平缓并向低温方向移动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dae/10674551/502c589db922/nanomaterials-13-02974-g011.jpg

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