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Effect of Pre-Cycling Rate on the Passivating Ability of Surface Films on Li4Ti5O12 Electrodes
Jiwon Jung, Hoe Jin Hah, Tae jin Lee, Jae Gil Lee, Jeong Beom Lee, Jongjung Kim, Jiyong Soon, Ji Heon Ryu, Jae Jeong Kim, Seung M. Oh
J. Electrochem. Sci. Technol. 2017;8(1):15-24.   Published online March 31, 2017
DOI: https://doi.org/10.5229/JECST.2017.8.1.15

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Bi4Ti3O12 and Bi3.25La0.75Ti3O12 Thin Films Prepared by RF Magnetron Sputtering
Key Engineering Materials. 2010;434-435:296-299   Crossref logo
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Electrical Characterization and Microstructures of Bi3.3Tb0.6Ti3O12 and Bi3.3Tb0.6Ti2.97V0.03O12 Thin Films
Key Engineering Materials. 2013;537:126-129   Crossref logo
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Electrical Characterization and Microstructures of Bi3.25Er0.75Ti3O12 and Bi2.9Er0.75Ti2.97V0.03O12 Thin Films
Advanced Materials Research. 2012;624:178-181   Crossref logo
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Electrical Characteristics and Microstructures of Bi2.9Pr0.9Ti3O12 and Bi2.9Pr0.92Ti2.97V0.03O12 Thin Films
Key Engineering Materials. 2013;537:122-125   Crossref logo
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Ferroelectric Properties and Microstructures of Bi4-xDyxTi3O12 Thin Films
Key Engineering Materials. 2014;633:378-381   Crossref logo
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Synthesis and Ferroelectric Properties of Sol–Gel Derived Intergrowth-Superlattice-Structured SrBi4Ti4O15-Bi4Ti3O12 Thin Films
Advanced Materials Research. 2011;197-198:1781-1784   Crossref logo
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Synthesis & Charact. of Ionic Conductors; Li12/7+x(Li4/7Ti24/7-xMx)O8 (M=Al,Cr & Fe) & Li12/7+2x(Li4/7Ti24/7-2xMg2x)O8 with Tunnel Structure
Key Engineering Materials. 2000;181-182:167-170   Crossref logo
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Electrical Characteristics and Microstructures of Pr2O3-Doped Bi4Ti3O12 Thin Films
Key Engineering Materials. 2014;633:370-373   Crossref logo
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Preparation and Ferroelectric Properties of Bi4-xTmxTi3O12 Thin Films
Advanced Materials Research. 2013;833:41-44   Crossref logo
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Effect of Sc2O3/V2O5 Substitution on the Ferroelectric Properties of Bi4Ti3O12 Ceramics
Key Engineering Materials. 2014;633:394-397   Crossref logo
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