Ab initio DFT plus U analysis of oxygen transport in LaCoO3: the effect of Co3+ magnetic states

作者:Ritzmann Andrew M; Pavone Michele; Munoz Garcia Ana B; Keith John A; Carter Emily A*
来源:Journal of Materials Chemistry A, 2014, 2(21): 8060-8074.
DOI:10.1039/c4ta00801d

摘要

Although solid oxide fuel cells (SOFCs) provide clean and efficient electricity generation, high operating temperatures (T > 800 degrees C) limit their widespread use. Lowering operating temperatures (600 degrees C < T < 800 degrees C) requires developing next-generation mixed ion-electron conducting (MIEC) cathodes that permit facile oxygen transport. One promising MIEC material, La1-xSrxCo1-yFeyO3 (LSCF), can operate at intermediate temperatures, has a longer cell lifetime, and permits less expensive interconnect materials. However, the road to optimization of LSCF compositions for SOFC applications would benefit from fundamental, atomic-scale insight into how local chemical changes affect its oxygen ion conductivity. We provide this insight using ab initio density functional theory plus U (DFT+U) calculations to analyze the factors governing oxygen transport in the LSCF parent material LaCoO3. We show that oxygen diffusion in LaCoO3 depends strongly on the spin state of the Co3+ ions: in particular, low spin Co3+ promotes higher oxygen vacancy concentrations than other spin states. We also predict that different spin states of Co3+ significantly affect the oxygen ion migration barrier. Through electronic structure analysis, we uncover the fundamental details which govern oxygen diffusivity in LaCoO3.

  • 出版日期2014