材料科学
密度泛函理论
锰铁矿
锰酸镧
纳米复合材料
氧化物
掺杂剂
纳米技术
化学物理
兴奋剂
化学工程
物理化学
化学
光电子学
计算化学
凝聚态物理
电极
物理
铁磁性
工程类
电解质
冶金
作者
Federico Baiutti,Francesco Chiabrera,Matias Acosta,David R. Diercks,David Parfitt,José Santiso,Xun Wang,Andrea Cavallaro,Àlex Morata,Haiyan Wang,A. Chroneos,Judith L. MacManus‐Driscoll,Albert Tarancón
标识
DOI:10.1038/s41467-021-22916-4
摘要
The implementation of nano-engineered composite oxides opens up the way towards the development of a novel class of functional materials with enhanced electrochemical properties. Here we report on the realization of vertically aligned nanocomposites of lanthanum strontium manganite and doped ceria with straight applicability as functional layers in high-temperature energy conversion devices. By a detailed analysis using complementary state-of-the-art techniques, which include atom-probe tomography combined with oxygen isotopic exchange, we assess the local structural and electrochemical functionalities and we allow direct observation of local fast oxygen diffusion pathways. The resulting ordered mesostructure, which is characterized by a coherent, dense array of vertical interfaces, shows high electrochemically activity and suppressed dopant segregation. The latter is ascribed to spontaneous cationic intermixing enabling lattice stabilization, according to density functional theory calculations. This work highlights the relevance of local disorder and long-range arrangements for functional oxides nano-engineering and introduces an advanced method for the local analysis of mass transport phenomena.
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