Improved energy storage performance of Bi(Mg0.5Ti0.5)O3 modified Ba0.55Sr0.45TiO3 lead-free ceramics for pulsed power capacitors

被引:2
|
作者
Rehman M.U. [1 ]
Manan A. [1 ]
Khan M.A. [1 ]
Uzair M. [2 ]
Qazi I. [3 ]
Iqbal Y. [2 ]
Ullah A. [4 ]
Ahmad A.S. [4 ]
机构
[1] Laboratory for Research in Advanced Materials, Department of Physics, University of Science & Technology Bannu, Township Bannu, Khyber Pakhtunkhwa
[2] Materials Research Laboratory, Department of Physics, University of Peshawar, Khyber Pakhtunkhwa
[3] Department of Materials Science and Engineering, Institute of Space Technology, Islamabad
[4] Center for Materials Science, Islamia College Peshawar, Khyber Pakhtunkhwa
关键词
BST; Capacitor; Efficiency; Energy density; Impedance;
D O I
10.1016/j.jeurceramsoc.2023.01.027
中图分类号
学科分类号
摘要
(1–x)Ba0.55Sr0.45TiO3–xBi(Mg0.5Ti0.5)O3 (x = 0, 0.08, 0.1, 0.12, 0.15, 0.2) ceramics were fabricated via a solid-state reaction route. The ultrahigh recoverable energy density (Wrec = 4.05 J cm−3), efficiency (η = 78%), maximum polarization (Pmax = 51.40 μC cm−2), and high dielectric breakdown strength (BDS = 230 kV cm−1) were achieved for the 0.9BST−0.1BMT ceramic. The fast discharge rate (t0.9∼0.14 μs), current density (CD∼637.02 A cm−2), high power density (PD∼38.70 MW cm−3), good temperature stability (20−180 °C), frequency stability (10−500 Hz), and fatigue endurance for cycling (105) of 0.9BST−0.1BMT ceramic make it suitable for the development of energy-storage devices. The relaxor behavior with a high Wrec (3.06 J cm−3) and η (93%) at BDS (220 kV cm−1) was also achieved for the 0.8BST−0.2BMT ceramic. This study systematically investigates the correlation among the structural, dielectric, impedance, and energy storage properties of BMT-doped BST ceramics. © 2023 Elsevier Ltd
引用
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页码:2426 / 2441
页数:15
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