Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8043965 | Vacuum | 2018 | 7 Pages |
Abstract
Pb (Zr,Ti)O3, (PZT) with Zr/Ti ratio 36/64, 44/56, 52/48, 60/40 and 68/32 are prepared to study the dependence of band gap, energy storage density and differential permittivity on Zr/Ti ratio. Band gaps of the samples are calculated by Kubelka-Munk plots from the Diffuse Reflectance Spectroscopy. The nature of the dependence of band gap on Zr/Ti ratio follows a theoretical model. Comparative studies on the dielectric, ferroelectric and piezo-electric properties are performed. Differential permittivity (DP) is calculated in the temperature range, 30â¯Â°C-200â¯Â°C. The DP is found to depend strongly on the electric field, temperature and Zr/Ti ratio. Similarly, the change in recoverable energy storage density (ÎJ) with temperature and Zr/Ti ratio is also investigated systematically. At room temperature, the value of ÎJ is observed to be as high as 64.4â¯mJ/cm3 at an applied field of 30â¯kV/cm for PZT (36/64) sample. The value of ÎJ decreases with Zr-content and increases with temperature up to 200â¯Â°C (experimental limitation) for PZT (36/64), PZT (44/56) and PZT (52/48) whereas the value stops increasing around 190 and 180â¯Â°C for PZT (60/40) and PZT (68/32). The highest value of ÎJ is observed to be 172.23â¯mJ/cm3 at 200â¯Â°C for PZT (36/64).
Related Topics
Physical Sciences and Engineering
Materials Science
Surfaces, Coatings and Films
Authors
Shibnath Samanta, V. Sankaranarayanan, K. Sethupathi,