2023
DOI: 10.1007/s10854-022-09485-y
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Energy storage performance of AgNbO3−x Bi2WO6 antiferroelectric ceramics

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Cited by 7 publications
(5 citation statements)
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“…The maximum W rec value of 2.78 J/cm 3 is obtained at x = 1.5 due to the highest η , slender P ‒ E loop, and moderate polarization. Figure S14d compares the energy‐storage properties of BLLMT‒2 wt% G ceramics with recently reported ceramics 2–4,9,11,12,15,18,24,26,30–41 . The BLLMT‒2 wt% G ceramics present relatively superior W rec than other reported ceramics, indicating that the BLLMT‒2 wt% G ceramics are potential candidates to promote the practical application of BaTiO 3 ‐based ceramics.…”
Section: Resultsmentioning
confidence: 76%
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“…The maximum W rec value of 2.78 J/cm 3 is obtained at x = 1.5 due to the highest η , slender P ‒ E loop, and moderate polarization. Figure S14d compares the energy‐storage properties of BLLMT‒2 wt% G ceramics with recently reported ceramics 2–4,9,11,12,15,18,24,26,30–41 . The BLLMT‒2 wt% G ceramics present relatively superior W rec than other reported ceramics, indicating that the BLLMT‒2 wt% G ceramics are potential candidates to promote the practical application of BaTiO 3 ‐based ceramics.…”
Section: Resultsmentioning
confidence: 76%
“…Figure S14d compares the energy-storage properties of BLLMT-2 wt% G ceramics with recently reported ceramics. [2][3][4]9,11,12,15,18,24,26,[30][31][32][33][34][35][36][37][38][39][40][41] The BLLMT-2 wt% G ceramics present relatively superior W rec than other reported ceramics, indicating that the BLLMT-2 wt% G ceramics are potential candidates to promote the practical application of BaTiO 3 -based ceramics.…”
Section: Methodsmentioning
confidence: 88%
“…This is also the case reported by Sun et al, [ 47 ] who found the grain refinement effect and the existence of tensile twins of extruded Zn–Mn alloys. Shi et al [ 48 ] reported that the microstructure of Zn–Mn–Cu alloys could be significantly refined by adjusting the amount of Mn.…”
Section: Resultsmentioning
confidence: 99%
“…For instance, hydroxyapatite hollow microtubes were used as the building blocks and chitosan was used as glue to construct porous composite scaffolds, which exhibited low density, high porosity, high strength and high Young's modulus. 487,488 Shi and co-workers 492 prepared an Al/SiC composite with a nacre/foam hybrid structure combining the lightweight of foam and high strength and toughness of nacre. They strengthened the foam with a 3D nanofiber network to prepare a nacre/ nanofiber reinforced foam composite, which exhibited higher specific strength and toughness than the nacre/foam composite, conventional dense Al/SiC composites and many engineering materials, and could reduce the adverse effect of foam pores on mechanical properties.…”
Section: Bioinspired Lightweight Materialsmentioning
confidence: 99%