Defective Interfaces in Yttrium-Doped Barium Zirconate Films and Consequences on Proton Conduction

被引:25
|
作者
Yang, Nan [1 ,2 ,3 ]
Cantoni, Claudia [4 ]
Foglietti, Vittorio [1 ,5 ]
Tebano, Antonello [1 ,2 ,5 ]
Belianinov, Alex [6 ]
Strelcov, Evgheni [6 ]
Jesse, Stephen [6 ]
Di Castro, Daniele [1 ,5 ]
Di Bartolomeo, Elisabetta [2 ,7 ]
Licoccia, Silvia [2 ,7 ]
Kalinin, Sergei V. [6 ]
Balestrino, Giuseppe [1 ,5 ]
Aruta, Carmela [1 ,2 ,5 ]
机构
[1] Univ Roma Tor Vergata, Natl Res Council CNR SPIN, I-00133 Rome, Italy
[2] Univ Roma Tor Vergata, NAST Ctr, I-00133 Rome, Italy
[3] Univ Niccolo Cusano, Fac Engn, I-00166 Rome, Italy
[4] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA
[5] Univ Roma Tor Vergata, Dept DICII, I-00133 Rome, Italy
[6] Oak Ridge Natl Lab, Ctr Nanophase Mat Sci, Oak Ridge, TN 37831 USA
[7] Univ Roma Tor Vergata, Dept Chem Sci & Technol, I-00133 Rome, Italy
关键词
ionic conduction; interface defects; doped barium zirconate; electrolytes; SPM; STEM; perovskite oxide thin films; IONIC-CONDUCTIVITY; CHARGE-CARRIERS; OXYGEN; DISLOCATIONS; BOUNDARIES; STABILITY;
D O I
10.1021/acs.nanolett.5b00698
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Yttrium-doped barium zirconate (BZY) thin films recently showed surprising electric transport properties. Experimental investigations conducted mainly by electrochemical impedance spectroscopy suggested that a consistent part of this BZY conductivity is of protonic nature. These results have stimulated further investigations by local unconventional techniques. Here, we use electrochemical strain microscopy (ESM) to detect electrochemical activity in BZY films with nanoscale resolution. ESM in a novel cross-sectional measuring setup allows the direct visualization of the interfacial activity. The local electrochemical investigation is compared with the structural studies performed by state of art scanning transmission electron microscopy (STEM). The ESM and STEM results show a clear correlation between the conductivity and the interface structural defects. We propose a physical model based on a misfit dislocation network that introduces a novel 2D transport phenomenon, whose fingerprint is the low activation energy measured.
引用
收藏
页码:2343 / 2349
页数:7
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