Superb Energy Storage Capability for NaNbO3‐Based Ceramics Featuring Labyrinthine Submicro‐Domains with Clustered Lattice Distortions

Author:

Wu Shengyang1,Fu Bo1,Zhang Jingji1ORCID,Du Huiwei1,Zong Quan1,Wang Jiangying1,Pan Zhongbin2,Bai Wangfeng3,Zheng Peng4

Affiliation:

1. College of Materials and Chemistry China Jiliang University Hangzhou Zhejiang 310018 P. R. China

2. School of Materials Science and Chemical Engineering Ningbo University Ningbo Zhejiang 315211 P. R. China

3. College of Materials and Environmental Engineering Hangzhou Dianzi University Hangzhou Zhejiang 310018 P. R. China

4. College of Electronics and Information Hangzhou Dianzi University Hangzhou Zhejiang 310018 P. R. China

Abstract

AbstractDesigning superb dielectric capacitors is valuable but challenging since achieving simultaneously large energy‐storage (ES) density and high efficiency is difficult. Herein, the synergistic effect of grain refining, bandgap widening, and domain engineering is proposed to boost comprehensive ES properties by incorporating CaTiO3 into 0.92NaNbO3‐0.08BiNi0.67Ta0.33O3 matrix (as abbreviated NN‐BNT‐xCT). Apart from grain refining and bandgap widening, multiple local distortions embedded in labyrinthine submicro‐domains, as indicated by diffraction‐freckle splitting and ½‐type superlattices, produce slush‐like polar clusters for the NN‐BNT‐0.2CT ceramic, which should be ascribed to the coexisting P4bm, P21ma, and Pnma2 phases. Consequently, a high recoverable ES density Wrec of ≈ 7.1 J cm−3 and a high efficiency η of ≈ 90% at 646 kV cm−1 is achieved for the NN‐BNT‐0.2CT ceramic. Such hierarchically polar structure is favorable to superb comprehensive ES properties, which provide a strategy for developing high‐performance dielectric capacitors.

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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