Spitsin A I, Bush A A, Kamentsev K E
MIREA - Russian Technological University (RTU MIREA), Moscow, Russia, 119454.
Sci Rep. 2020 Dec 17;10(1):22198. doi: 10.1038/s41598-020-78826-w.
Bi-based layer structure ferroelectrics are the most promising compounds for the fabrication of high-temperature piezoelectric materials. Studies aiming to develop and optimize the techniques to produce efficient high-density piezoelectric ceramics, and to investigate the effects of ceramics production conditions on their structure and functional properties, have become high-priority objectives of modern piezo-engineering. We applied ultra high dilution (UHD) technology to pre-treat BiTiNbO powders and used hot pressing to prepare perovskite-layer structured ceramic specimens. Main characteristics of the synthesized piezoelectric ceramic specimens (the dimensions of the BiTiNbO orthorhombic unit cell, dielectric permittivity, dielectric loss, piezoelectric coefficient d and pyroelectric coefficient p) and their temperature-dependent variations were studied using piezoelectric, dielectric, and pyroelectric measurements. X-ray diffraction studies demonstrated that the prepared ceramics were single phased, and highly textured, as their plate-like crystallites were preferentially aligned perpendicularly to the pressure axis on hot pressing. For d, an increase in values of more than 20% was found for samples obtained using a combined modification of the UHD technology and hot pressing (12 pC/N) relative to intact samples, and more than two times relative to unmodified BiTiNbO ceramics (6 pC/N). Due to their characteristics, the obtained ceramics are promising materials for high-temperature applications; of particular interest is potential use, as electroacoustic transducers and sensors for operation at high temperatures. Thus, the UHD technology can modify the properties of ceramics and is relatively easy to implement. This makes it attractive for use in various fields of science and technology.
铋基层状结构铁电体是制造高温压电材料最有前景的化合物。旨在开发和优化生产高效高密度压电陶瓷的技术,以及研究陶瓷生产条件对其结构和功能特性影响的研究,已成为现代压电工程的首要目标。我们应用超高稀释(UHD)技术对BiTiNbO粉末进行预处理,并采用热压法制备钙钛矿层状结构陶瓷样品。利用压电、介电和热释电测量研究了合成压电陶瓷样品的主要特性(BiTiNbO正交晶胞尺寸、介电常数、介电损耗、压电系数d和热释电系数p)及其随温度的变化。X射线衍射研究表明,制备的陶瓷为单相且具有高度织构,因为其板状微晶在热压时优先垂直于压力轴排列。对于d,相对于完整样品,采用UHD技术和热压联合改性获得的样品(12 pC/N)的值增加了20%以上,相对于未改性的BiTiNbO陶瓷(6 pC/N)增加了两倍以上。由于其特性,所获得的陶瓷是高温应用的有前景材料;特别令人感兴趣的是其作为高温下运行的电声换能器和传感器的潜在用途。因此,UHD技术可以改变陶瓷的性能,并且相对容易实施。这使其在各种科学和技术领域具有吸引力。