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Enhanced energy storage performance in bismuth layer-structured BaBi2Me2O9 (Me = Nb and Ta) relaxor ferroelectric ceramics

机译:增强铋层结构Babi2Me2O9(ME = NB和TA)松弛铁电陶瓷中的能量存储性能

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摘要

Bismuth layer-structured BaBi2Nb2O9 (BBN) and BaBi2Ta2O9 (BBT) relaxor ferroelectric ceramics were explored as potential energy storage materials. Remarkable energy storage performances were obtained in both BBN and BBT ceramics, featured by large recoverable energy storage density (similar to 0.84 J/cm(3) and similar to 0.68 J/cm(3)) and high energy storage efficiency (similar to 90% and similar to 94%), respectively. Furthermore, both the two ceramics exhibit good thermal and frequency stabilities. Delightedly, both the BBN and BBT ceramics can complete the discharge process within 0.15 mu s, resulting in ultrahigh current density of 195 A/cm(2) and 234 A/cm(2) and excellent power density of 10.74 MW/cm(3) and 12.89 MW/cm(3), respectively. The obtained results suggest that BaBi2Nb2O9 and BaBi2Ta2O9 ceramics could have a promising future in energy storage applications. This study also demonstrates that the bismuth layer-structured relaxor ferroelectric ceramic can be considered as a novel potential lead-free energy storage materials, in addition to the widely studied pervoskite-structured relaxor ferroelectric ceramics.
机译:铋层结构的BABI2NB2O9(BBN)和BABI2TA2O9(BBT)松弛剂铁电陶瓷被探索为潜在的储能材料。在BBN和BBT陶瓷中获得了显着的能量存储性能,可通过较大可收回的能量存储密度(类似于0.84J / cm(3)并且类似于0.68J / cm(3))和高储能效率(类似于90 %且相似于94%)。此外,两个陶瓷两者都表现出良好的热和频率稳定性。令人愉快地,BBN和BBT陶瓷都可以在0.15μs内完成放电过程,导致超高电流密度为195A / cm(2)和234A / cm(2),优异的功率密度为10.74 mW / cm(3分别为12.89 mw / cm(3)。所获得的结果表明Babi2NB2O9和Babi2TA2O9陶瓷可以在储能应用中具有有希望的未来。本研究还表明,除了广泛研究的Perovoskite结构的松弛剂铁电陶瓷之外,铋层结构弛豫陶瓷可被认为是一种新型潜在的无铅储能材料。

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