Preparation of Nanoceramic Material Based on Bismuth Titanate Bi2Ti4O11
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11148-024-00876-8.pdf
Reference22 articles.
1. S. Sun and X. Yin, “Progress and perspectives on Aurivillius-type layered ferroelectric oxides in binary Bi4Ti3O12–BiFeO3 system for multifunctional applications,” Crystals, 11(23), 1 – 34 (2021); https://doi.org/10.3390/cryst11010023.
2. G. A. Kallawar, D. P. Barai, and B. A. Bhanvase, “Bismuth titanate based photocatalysts for degradation of persistent organic compounds in wastewater: A comprehensive review on synthesis methods, performance as photocatalyst and challenges,” J. Cleaner Prod., 318, Art. No. 128563 (2021); https://doi.org/10.1016/j.jclepro.2021.128563.
3. J. Juay, J.-Ch. E. Yang, H. Bai, et al., “Novel ultralong and photoactive Bi2Ti4O11/TiO2 heterojunction nanofibers toward efficient textile wastewater treatment,” RSC Adv., 12, 25449 – 25456 (2022); https://doi.org/10.1039/D2RA02181A.
4. J. R. Esquivel-Elizondo, B. B. Hinojosa, and J. C. Nino, “Bi2Ti2O7: It is not what you have read,” Chem. Mater., 23, 4965 – 4974 (2011); https://doi.org/10.1021/cm202154c.
5. Y.-Ch. Song, W.-W. Wu, P. Liu, et al., “Enhanced breakdown strength and dielectric properties of Bi0.0025Nb0.0025Ti0.995O2–Bi2Ti4O11 ceramics sintered at 1130 °C,” Ceram. Int., 46(4), 5443 – 5447 (2020); https://doi.org/10.1016/j.ceramint.2019.10.142.
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