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Improved energy storage density and energy efficiency of Samarium modified PMNT electroceramic

机译:提高钐改性PMNT电陶瓷的储能密度和能源效率

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? 2022 Elsevier Ltd and Techna Group S.r.l.We report the improved energy storage density and efficiency after 2.5 of Samarium substitution in ferroelectric Pb(Mg1/3Nb2/3)0.80Ti0.20O3 (PMNT) electroceramic. The microstructure and surface morphology were analyzed and correlated with various functional properties. The energy storage density, leakage current density, ferroelectric and dielectric properties were investigated thoroughly, indicating that Samarium's substitution significantly modified the microstructure, the dielectric strength, breakdown electric field, and turned ferroelectric PMNT to relaxor ferroelectrics. Due to the relaxor nature, the gap between remanent polarization and maximum polarization increases with the substitution of Samarium in PMNT matrix, which further increases the recoverable energy storage density and energy efficiency. A nearly 100 increase in recoverable energy density and efficiency was obtained at an electric field strength of 35 kV/cm at room temperature (~296 K). The electroceramic shows maximum energy density near the ferroelectric phase transition temperature (325 K–345 K) region and provides a moderate energy storage density for possible applications in power microelectronics.
机译:?2022 Elsevier Ltd 和 Techna Group S.r.l.我们报道了铁电 Pb[(Mg1/3Nb2/3)0.80Ti0.20]O3 (PMNT) 电陶瓷中钐替代 2.5% 后的能量存储密度和效率的提高。分析了其微观结构和表面形貌,并与各种功能特性相关联。对储能密度、漏电流密度、铁电和介电性能进行了深入研究,表明钐的取代显著改变了钐的微观结构、介电强度、击穿电场,并将铁电PMNT转变为弛豫铁电体。由于弛豫体的性质,剩余极化与最大极化之间的差距随着PMNT基体中钐的取代而增大,进一步提高了可恢复储能密度和能源效率。在室温下 (~296 K) 下,当电场强度为 35 kV/cm 时,可回收能量密度和效率提高了近 100%。电陶瓷在铁电相变温度 (325 K–345 K) 区域附近显示出最大能量密度,并为电力微电子中的可能应用提供了适度的能量存储密度。

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