دورية أكاديمية

Improvement of the energy storage performance in Pb0.88La0.12ZrO3 thin films by inserting ZrO2 layer.

التفاصيل البيبلوغرافية
العنوان: Improvement of the energy storage performance in Pb0.88La0.12ZrO3 thin films by inserting ZrO2 layer.
المؤلفون: Wang, X.W.1 (AUTHOR) wangxw@htu.edu.cn, Chen, J.Y.1 (AUTHOR), Zheng, M.M.1 (AUTHOR), Yang, F.1 (AUTHOR), Shao, D.H.1 (AUTHOR), Hao, Y.1 (AUTHOR), Liang, T.K.1 (AUTHOR), Feng, J.Q.1 (AUTHOR), Liu, C.1 (AUTHOR), Yu, K.X.1 (AUTHOR), Li, X.F.1 (AUTHOR), Hu, Y.C.1 (AUTHOR), Zhang, D.W.1 (AUTHOR)
المصدر: Physica B. Sep2023, Vol. 665, pN.PAG-N.PAG. 1p.
مصطلحات موضوعية: *ENERGY storage, *THIN films, *ZIRCONIUM oxide, *ELECTRIC breakdown, *ENERGY density
مستخلص: A method for significantly enhancing the breakdown field strength and energy storage density of Pb 0.88 La 0.12 ZrO 3 (PLZ) films by inserting ZrO 2 (ZO) layer is provided. PLZ films with the inserting layer of ZrO 2 were deposited on SiO 2 /Si substrates buffered with LaNiO 3 films by the sol-gel method. The effect of ZrO 2 precursor solution concentration on structure and electrical properties was investigated. The results show that for the composite films with the sandwich structure, much improved electrical breakdown strength values of 1543 kV/cm and maximum polarization values of 83.5 μC/cm2 were obtained, which are 141% and 40% higher than pure PLZ films, respectively. With the combination of a high breakdown field strength and a large maximum polarization value, the film has an energy storage density of up to 32.6 J/cm3 when ZrO 2 precursor solution concentration is 0.1 mol/L. Our results show that the design of PLZ/ZO/PLZ composite films is an effective way to obtain high energy storage density capacitors. • The composite films exhibited high electrical breakdown strength value. • The energy storage density of PLZ/ZO/PLZ composite film is raise to 32.6 J/cm3. • Inserting ZrO2 layer is a good way to improve the energy storage of PLZ films. [ABSTRACT FROM AUTHOR]
قاعدة البيانات: Academic Search Index
الوصف
تدمد:09214526
DOI:10.1016/j.physb.2023.415073