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Broad-high operating temperature range and enhanced energy storage performances in lead-free ferroelectrics.


ABSTRACT: The immense potential of lead-free dielectric capacitors in advanced electronic components and cutting-edge pulsed power systems has driven enormous investigations and evolutions heretofore. One of the significant challenges in lead-free dielectric ceramics for energy-storage applications is to optimize their comprehensive characteristics synergistically. Herein, guided by phase-field simulations along with rational composition-structure design, we conceive and fabricate lead-free Bi0.5Na0.5TiO3-Bi0.5K0.5TiO3-Sr(Sc0.5Nb0.5)O3 ternary solid-solution ceramics to establish an equitable system considering energy-storage performance, working temperature performance, and structural evolution. A giant Wrec of 9.22 J cm-3 and an ultra-high ƞ ~ 96.3% are realized in the BNKT-20SSN ceramic by the adopted repeated rolling processing method. The state-of-the-art temperature (Wrec ≈ 8.46 ± 0.35 J cm-3, ƞ ≈ 96.4 ± 1.4%, 25-160 °C) and frequency stability performances at 500 kV cm-1 are simultaneously achieved. This work demonstrates remarkable advances in the overall energy storage performance of lead-free bulk ceramics and inspires further attempts to achieve high-temperature energy storage properties.

SUBMITTER: Zhao W 

PROVIDER: S-EPMC10504284 | biostudies-literature | 2023 Sep

REPOSITORIES: biostudies-literature

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Broad-high operating temperature range and enhanced energy storage performances in lead-free ferroelectrics.

Zhao Weichen W   Xu Diming D   Li Da D   Avdeev Max M   Jing Hongmei H   Xu Mengkang M   Guo Yan Y   Shi Dier D   Zhou Tao T   Liu Wenfeng W   Wang Dong D   Zhou Di D  

Nature communications 20230915 1


The immense potential of lead-free dielectric capacitors in advanced electronic components and cutting-edge pulsed power systems has driven enormous investigations and evolutions heretofore. One of the significant challenges in lead-free dielectric ceramics for energy-storage applications is to optimize their comprehensive characteristics synergistically. Herein, guided by phase-field simulations along with rational composition-structure design, we conceive and fabricate lead-free Bi<sub>0.5</su  ...[more]

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