Journalartikel
Autorenliste: Bentzen, Marcus; Maier, Juliana; Eckstein, Udo; He, Jianying; Henss, Anja; Khansur, Neamul; Glaum, Julia
Jahr der Veröffentlichung: 2023
Seiten: 4386-4394
Zeitschrift: Journal of the European Ceramic Society
Bandnummer: 43
Heftnummer: 10
ISSN: 0955-2219
eISSN: 1873-619X
Open Access Status: Hybrid
DOI Link: https://doi.org/10.1016/j.jeurceramsoc.2023.03.012
Verlag: Elsevier
Abstract:
Piezoelectric ceramics are envisioned as cell stimulating materials for in-vivo, load-bearing applications. To compensate for their brittle nature developing ceramic films on medically accredited metals is a promising approach. However, high temperature consolidation is often required to achieve highly dense ceramics with suitable functional properties, which can compromise the metal substrate integrity. With aerosol deposition highly dense thick films can be produced at room temperature. Still, an annealing step is required to enhance the functional properties of piezoelectric ceramics. Thermal annealing of dense, aerosol deposited BaTiO3 thick films on 304SUS stainless steel gave a clear enhancement of the dielectric properties. An increase in saturation po-larization and the adoption of ferroelectric hysteresis at 750 degrees C coincided with a significant reduction in me-chanical properties. The simultaneous appearance of grain growth and diffusion of chromium from the substrate at 750 degrees C suggests that chromium acts as a sintering aid.
Zitierstile
Harvard-Zitierstil: Bentzen, M., Maier, J., Eckstein, U., He, J., Henss, A., Khansur, N., et al. (2023) Enhanced grain growth and dielectric properties in aerosol deposited BaTiO3, Journal of the European Ceramic Society, 43(10), pp. 4386-4394. https://doi.org/10.1016/j.jeurceramsoc.2023.03.012
APA-Zitierstil: Bentzen, M., Maier, J., Eckstein, U., He, J., Henss, A., Khansur, N., & Glaum, J. (2023). Enhanced grain growth and dielectric properties in aerosol deposited BaTiO3. Journal of the European Ceramic Society. 43(10), 4386-4394. https://doi.org/10.1016/j.jeurceramsoc.2023.03.012
Schlagwörter
AEROSOL DEPOSITION; Barium titanate; BARIUM-TITANATE; BIOMATERIALS; CERAMIC COATINGS; Functional ceramics; ROOM-TEMPERATURE; Sintering; TEMPERATURE IMPACT CONSOLIDATION; THERMAL-EXPANSION; Thick films; THICK-FILMS