论文标题

成分复杂的钙钛矿氧化物作为新的锂离子固体电解质

Compositionally Complex Perovskite Oxides as a New Class of Li-Ion Solid Electrolytes

论文作者

Ko, Shu-Ting, Lee, Tom, Qi, Ji, Zhang, Dawei, Peng, Wei-Tao, Wang, Xin, Tsai, Wei-Che, Sun, Shikai, Wang, Zhaokun, Bowman, William J., Ong, Shyue Ping, Pan, Xiaoqing, Luo, Jian

论文摘要

构图复杂的陶瓷(CCC),包括高渗透陶瓷(HEC)作为子类,为材料发现的新机会提供了新的材料发现机会,而不是搜索新的化学计量化合物的传统方法。本文中,我们通过(1)非等摩尔组成设计和(2)控制微观结构和接口的无缝组合建立了新的策略来定制CCC。我们将氧化物固体电解质用于全稳态电池作为示例,我们通过发现一类新的成分复杂的钙钛矿氧化物(CCPOS)来验证这些新策略,以表明超出传统掺杂极限的离子电导率的可能性。例如(在检查的28个CCPO中),我们证明了离子电导率可以提高(li0.375sr0.4375)(TA0.375NB0.375ZR0.125HF0.125)在(li0.375sr0.4375)中的> 60%。 (LI0.375SR0.4375)(TA0.75ZR0.25)O3-δ(LSTZ)基线,通过保持可比的电化学稳定性。此外,离子电导率可以通过晶界(GB)工程来提高> 70%,从而达到LSTZ基线的270%。这项工作提出了设计和调整HEC和CCC的变革性新策略,从而打开了一个新窗口,以发现用于存储的材料和许多其他应用。

Compositionally complex ceramics (CCCs), including high-entropy ceramics (HECs) as a subclass, offer new opportunities of materials discovery beyond the traditional methodology of searching new stoichiometric compounds. Herein, we establish new strategies of tailoring CCCs via a seamless combination of (1) non-equimolar compositional designs and (2) controlling microstructures and interfaces. Using oxide solid electrolytes for all-solid-state batteries as an exemplar, we validate these new strategies via discovering a new class of compositionally complex perovskite oxides (CCPOs) to show the possibility of improving ionic conductivities beyond the limit of conventional doping. As an example (amongst the 28 CCPOs examined), we demonstrate that the ionic conductivity can be improved by >60% in (Li0.375Sr0.4375)(Ta0.375Nb0.375Zr0.125Hf0.125)O3-δ, in comparison with the state-of-art (Li0.375Sr0.4375)(Ta0.75Zr0.25)O3-δ (LSTZ) baseline, via maintaining comparable electrochemical stability. Furthermore, the ionic conductivity can be improved by another >70% via grain boundary (GB) engineering, achieving >270% of the LSTZ baseline. This work suggests transformative new strategies for designing and tailoring HECs and CCCs, thereby opening a new window for discovering materials for energy storage and many other applications.

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