氧化物
六方晶系
化学稳定性
电导率
钙钛矿(结构)
复合氧化物
质子
组态熵
材料科学
热力学
化学物理
熵(时间箭头)
结晶学
化学
物理化学
物理
有机化学
量子力学
作者
Abid Ullah,Basharat Hussain,Yong Youn,Hyung-Bin Bae,Jong‐Eun Hong,Dong Woo Joh,Seung‐Bok Lee,Rak‐Hyun Song,Tae Woo Kim,Tak‐Hyoung Lim,Hye‐Sung Kim
出处
期刊:Dalton Transactions
[Royal Society of Chemistry]
日期:2023-01-01
卷期号:52 (7): 1885-1894
被引量:10
摘要
Since the high configurational entropy-driven structural stability of multicomponent oxide system was proposed Rost et al. in 2015, many experiments and simulations have been done to develop new multicomponent oxides. Although many notable findings have shown unique physical and chemical properties, high configurational entropy oxide systems that have more than 3 distinct cation sites are yet to be developed. By utilizing atomic-scale direct imaging with scanning transmission electron microscopy and AC-impedance spectroscopy analysis, we demonstrated for the first time that a multicomponent equimolar proton-conducting quadruple hexagonal perovskite-related Ba5RE2Al2ZrO13 (RE = rare earth elements) oxide system can be synthesized even when adding eight different rare earth elements. In particular, as the number of added elements was increased, i.e., as the configurational entropy was increased, we confirmed that the chemical stability toward CO2 was improved without a significant decrement of the proton conductivity. The findings in this work broaden the use of the crystal structure to which the multicomponent model can be applied, and a systematic study on the correlation between the configurational entropy and proton conductivity and/or chemical stability is noteworthy.
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