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Title: | Phenomenal Improvement of Piezoelectric Voltage Coefficient in [00l] Textured K0.5Bi0.5TiO3 Ceramics |
Authors: | Badole, Manish;Dwivedi, Sushmita;Vasavan, Hari Narayanan;Kumar, Sunil; |
Keywords: | Aspect ratio; Bismuth compounds; Energy harvesting; Grain growth; Perovskite; Piezoelectric ceramics; Piezoelectricity; Textures; X ray diffraction; Growth techniques; Piezoelectric voltage; Plate-like morphology; Reactive templates; Tape casting; Template grain growth; Topochemical; Voltage coefficient; X- ray diffractions; X-ray diffraction; Sintering |
Issue Date: | 2022 |
Publisher: | Elsevier B.V. |
Citation: | Badole, M., Dwivedi, S., Vasavan, H. N., Singh, S., & Kumar, S. (2022). Phenomenal improvement of piezoelectric voltage coefficient in [00l] textured K0.5Bi0.5TiO3 ceramics. Materialia, 26 doi:10.1016/j.mtla.2022.101568 |
Abstract: | [00l] textured K0.5Bi0.5TiO3 ceramics were fabricated via the reactive template grain growth technique and tape-casting. Plate-like morphology of perovskite K0.5Bi0.5TiO3 powder was achieved via the topochemical conversion of K0.5Bi4.5Ti4O15 (4-layers Aurivillius oxide) template. A Lotgering factor of 71% and large plate-like grains with an aspect ratio of ∼ 12 were observed in textured K0.5Bi0.5TiO3 (KBT-T) ceramics. Poled KBT-T ceramics exhibited a much lower RT dielectric constant of ∼160 and significantly improved d33 ∼ 135 pC/N as compared to KBT ceramics with randomly oriented grains (KBT-R). Impressively, the obtained value of piezoelectric voltage coefficient (g33 ∼ 95×10−3 Vm/N) for KBT-T ceramics is the highest ever reported for lead-free piezoceramics, which is an almost 500% increase over the KBT-R sample (g33 ∼ 16×10−3 Vm/N). The piezoelectric energy harvesting capability of the KBT-T sample was demonstrated by the observed peak-to-peak output voltage ∼ 7.5 V and current ∼ 2 μA under a finger tapping motion. The remanent polarization value (Pr ≈ 20 μC/cm2 at an applied electric field of 80 kV/cm) of the KBT-T ceramic was significantly higher than that of the KBT-R sample (Pr ≈ 12 μC/cm2). © 2022 |
URI: | https://doi.org/10.1016/j.mtla.2022.101568 https://dspace.iiti.ac.in/handle/123456789/10917 |
ISSN: | 2589-1529 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Metallurgical Engineering and Materials Sciences |
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