晶界
材料科学
离子电导率
微晶
离子键合
载流子
陶瓷
电导率
带隙
空间电荷
化学物理
热传导
兴奋剂
凝聚态物理
电子
光电子学
离子
复合材料
微观结构
冶金
电解质
化学
电极
物理化学
物理
有机化学
量子力学
作者
Thomas Defferriere,Dino Klotz,Juan Carlos Gonzalez‐Rosillo,Jennifer L. M. Rupp,Harry L. Tuller
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2022-01-13
卷期号:21 (4): 438-444
被引量:34
标识
DOI:10.1038/s41563-021-01181-2
摘要
Grain boundary conductivity limitations are ubiquitous in material science. We show that illumination with above-bandgap light can decrease the grain boundary resistance in solid ionic conductors. Specifically, we demonstrate the increase of the grain boundary conductance of a 3 mol% Gd-doped ceria thin film by a factor of approximately 3.5 at 250 °C and the reduction of its activation energy from 1.12 to 0.68 eV under illumination, while light-induced heating and electronic conductivity could be excluded as potential sources for the observed opto-ionic effect. The presented model predicts that photo-generated electrons decrease the potential barrier heights associated with space charge zones depleted in charge carriers between adjacent grains. The discovered opto-ionic effect could pave the way for the development of new electrochemical storage and conversion technologies operating at lower temperatures and/or higher efficiencies and could be further used for fast and contactless control or diagnosis of ionic conduction in polycrystalline solids.
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