| Literature DB >> 32218384 |
Youfeng Zhang1, Yali Yao1, Shasha He1.
Abstract
Lithium tantalite (LiTaO3) is a common piezoelectric and ferroelectric crystal, but the LiTaO3 polycrystalline ceramics have rarely been reported, and their refractory character presents difficulties in their fabrication. In this study, LiTaO3-based ceramics with different amounts of CoO were prepared by pressureless sintering at 1250 °C, and the effects of the amount of sintering aid on the sinterability, microstructure, and dielectric properties of the ceramics were investigated. The relative densities of the LiTaO3-based ceramics were significantly improved by the addition of CoO powder. The LiTaO3-based ceramics achieved the highest relative density (89.4%) and obtained a well-grained microstructure when the added amount of CoO was 5 wt.%. Only the LiTaO3 phase in the ceramics was observed, indicating that the ions Co diffused into the LiTaO3 lattices and mainly existed in two forms: Co2+ and Co3+. The effects of the added amount of CoO on the dielectric properties of the LiTaO3-based ceramics were studied thoroughly. Consequently, the dielectric constant was enhanced, and the dielectric loss decreased in the LiTaO3-based ceramics with the addition of CoO. The optimal value was obtained at 5 wt.% of CoO-added LiTaO3-based ceramics.Entities:
Keywords: LiTaO3 ceramics; cobaltous oxide; dielectric properties; microstructure
Year: 2020 PMID: 32218384 PMCID: PMC7178233 DOI: 10.3390/ma13071506
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Figure 1Relative density of LiTaO3-based ceramics with different amounts of CoO.
Figure 2XRD patterns (a) and partial enlarged patterns of CoO/LiTaO3-based ceramics (b).
Figure 3Co2p XPS spectra of LiTaO3-based ceramics with different amounts of CoO. (a) 1 wt.% (b) 3 wt.% (c) 5 wt.% (d) 7 wt.%.
Figure 4SEM micrographs of CoO/LiTaO3-based ceramics. (a) 1 wt.% (b) 3 wt.% (c) 5 wt.% (d) 7 wt.%.
Figure 5The frequency-dependent dielectric constant (a) and dielectric loss (b) of the LiTaO3-based ceramics at room temperature.
Figure 6Dielectric constant (a) and dielectric loss (b) of LiTaO3-based ceramics with different amounts of CoO doping as a function of temperature at 10 kHz.
Figure 7The variation of log (1/ε-1/εm) versus log (T-Tm) for the LiTaO3-based ceramics with different compositions at 10 kHz. (a) 1 wt.% (b) 3 wt.% (c) 5 wt.% (d) 7 wt.%.