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Grain growth in strontium titanate in electric fields: The impact of space-charge on the grain-boundary mobility

, , , , and . Journal of the American Ceramic Society, 102 (6): 3779-3790 (2019)

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The mechanism of grain boundary motion in SrTiO<inf>3</inf>, , , and . Journal of Materials Science, 51 (1): 467-475 (2015)Nondestructive evaluation of 3D microstructure evolution in strontium titanate, , , , , , , , , and 3 other author(s). Journal of Applied Crystallography, 53 (2): 349-359 (2020)Homogenization of the thermoelastic properties of silicon nitride, , , , and . Acta Materialia, 59 (15): 6029-6038 (2011)The equilibrium crystal shape of strontium titanate and its relationship to the grain boundary plane distribution, , , , , , and . Acta Materialia, (2015)Phase-field study of pore-grain boundary interaction, , , , and . Journal of the Ceramic Society of Japan, 124 (4): 329-339 (2016)Impact of AC and DC Electric Fields on the Microstructure Evolution in Strontium Titanate, , and . Advanced Engineering Materials, (2023)Defect redistribution along grain boundaries in SrTiO<sub>3</sub> by externally applied electric fields, , , , , , , and . Journal of the European Ceramic Society, 43 (4): 1625-1632 (2023)Non-Arrhenius grain growth in strontium titanate: Quantification of bimodal grain growth, , , , and . Acta Materialia, (2019)Sintering and grain growth in SrTiO<inf>3</inf>: Impact of defects on kinetics, , and . Journal of the Ceramic Society of Japan, 124 (4): 346-353 (2016)Characterization of grain boundary disconnections in SrTiO<inf>3</inf> part I: the dislocation component of grain boundary disconnections, , , , and . Journal of Materials Science, 54 (5): 3694-3709 (2019)