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Comments on Inorganic Chemistry
A Journal of Critical Discussion of the Current Literature
Volume 40, 2020 - Issue 6
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The Effect of Hydrothermal Synthesis Parameters on the Formation of Sodium Bismuth Titanate

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References

  • Saito, Y.; Takao, H.; Tani, T.; Nonoyama, T.; Takatori, K.; Homma, T.; Nagaya, T.; Nakamura, M. Lead-Free Piezoceramics. Nature. 2004, 432(7013), 84–87. DOI: 10.1038/nature03028.
  • Shrout, T. R.; Zhang, S. J. Lead-Free Piezoelectric Ceramics: Alternatives for Pzt? J. Electroceram. 2007, 19(1), 113–126. DOI: 10.1007/s10832-007-9047-0.
  • Lisnevskaya, I. V.; Butova, V. V.; Perebeinos, M. I.; Myagkaya, K. V.; Letovaltsev, A. O.; Shapovalov, V. V.; Zahran, H. Y.; Yahia, I. S.; Soldatov, A. V. On the Possibility of Synthesizing Bimno3 at Ambient Pressure Using Low-Temperature Methods. Comments Inorg. Chem. 2019, 39, 270–286. DOI: 10.1080/02603594.2019.1643331.
  • Lisnevskaya, I. V.; Myagkaya, K. V.; Butova, V. V.; Shapovalov, V. V.; Rusalev, Y. V.; Zahran, H. Y.; Yahia, I. S.; Soldatov, A. V. Preferences of the End Members of the Lanthanide Series for a and B Sites in Bifeo3. Ceram. Int. 2020, 46(5), 6333–6341. DOI: 10.1016/j.ceramint.2019.11.109.
  • Jones, G. O.; Thomas, P. A. Investigation of the Structure and Phase Transitions in the Novel a-Site Substituted Distorted Perovskite Compound Na0.5bi0.5tio3. Acta Crystallogr. Sect. B-Struct. Sci.Cryst. Eng. Mat. 2002, 58, 168–178. DOI: 10.1107/s0108768101020845.
  • Jo, W.; Schaab, S.; Sapper, E.; Schmitt, L. A.; Kleebe, H. J.; Bell, A. J.; Rodel, J. On the Phase Identity and Its Thermal Evolution of Lead Free (Bi1/2na1/2)tio3-6 Mol% Batio3. J. Appl. Phys. 2011, 110, 074106. DOI: 10.1063/1.3645054.
  • Li, M.; Pietrowski, M. J.; De Souza, R. A.; Zhang, H. R.; Reaney, I. M.; Cook, S. N.; Kilner, J. A.; Sinclair, D. C. A Family of Oxide Ion Conductors Based on the Ferroelectric Perovskite Na0.5bi0.5tio3. Nat. Mater. 2014, 13(1), 31–35. DOI: 10.1038/nmat3782.
  • Smolenskij, G. A.; Bokov, V. A.; Isupov, V. A.; Krajnik, N. N.; Pasynkov, R. E.; Shur, M. S. Segnetoelektriki I Antisegnetoelektriki (In Rrussian); Nauka, Leningrad, 1971.
  • Venevcev, Y. N.; Politova, E. D.; Ivanov, S. A. Segneto- I Antisegnetoelektriki Semejstva Titanata Bariya (In Russian); Chimiya, Moskow, 1985.
  • Chen, X. Y.; Zeng, J.; Yan, X.; Zhou, M. X.; Tang, P.; Liang, T. Q.; Li, W. Z. Effects of Bi Deficiency on the Microstructural and Conductive Properties of Na0.5bi0.5tio3 (Nbt) Perovskites. Solid State Ion. 2017, 309, 152–162. DOI: 10.1016/j.ssi.2017.07.024.
  • Chen, X. Y.; Zhou, M. X.; Shi, J. Z.; Liang, T. Q.; Zeng, J.; Yan, X.; Luo, N. N.; Li, W. Z.; Wei, Y. Z. Microstructure and Electrical Conductivity of a-Site Fully Stoichiometric Na0.5+Xbi0.5-Xtio3-Delta with Different Na/Bi Ratios. Ceram. Int. 2019, 45, 11438–11447. DOI: 10.1016/j.ceramint.2019.03.011.
  • Li, M.; Zhang, H. R.; Cook, S. N.; Li, L. H.; Kilner, J. A.; Reaney, I. M.; Sinclair, D. C. Dramatic Influence of a-Site Nonstoichiometry on the Electrical Conductivity and Conduction Mechanisms in the Perovskite Oxide Na0.5bi0.5tio3. Chem. Mat. 2015, 27, 629–634. DOI: 10.1021/cm504475k.
  • Sung, Y. S.; Kim, J. M.; Cho, J. H.; Song, T. K.; Kim, M. H.; Chong, H. H.; Park, T. G.; Do, D.; Kim, S. S. Effects of Na Nonstoichiometry in (Bi0.5na0.5+x)tio3 Ceramics. Appl. Phys. Lett. 2010, 96(2), 022901. DOI: 10.1063/1.3275704.
  • Guo, Y. P.; Gu, M. Y.; Luo, H. S.; Liu, Y.; Withers, R. L. Composition-Induced Antiferroelectric Phase and Giant Strain in Lead-Free (Na-y,bi-z)ti1-xo3(1-x)-xbatio(3) Ceramics. Phys. Rev. B. 2011, 83, 054118. DOI: 10.1103/PhysRevB.83.054118.
  • Wei, Y. F.; Chung, H. H.; Yang, C. F.; Chen, K. H.; Diao, C. C.; Kao, C. H. The Influence of Different Fabrication Processes on Characteristics of Excess Bi2o3-Doped 0.95 (Na0.5bi0.5)tio3-0.05 Batio3 Ceramics. J. Phys. Chem. Solids. 2008, 69, 934–940. DOI: 10.1016/j.jpcs.2007.10.020.
  • Halim, N. A.; Velayutham, T. S.; Abd Majid, W. H. Pyroelectric, Ferroelectric, Piezoelectric and Dielectric Properties of Na0.5bi0.5tio3 Ceramic Prepared by Sol-Gel Method. Ceram. Int. 2016, 42(14), 15664–15670. DOI: 10.1016/j.ceramint.2016.07.022.
  • Jean, F.; Duclere, J. R.; Remondiere, F.; Boulle, A.; Deputier, S.; Coudert, V.; Guilloux-Viry, M. Randomly Organized and Self-Assembled Na0.5bi0.5tio3 Nanodots Elaborated by Sol-Gel and Pulsed Laser Deposition Routes. Mater. Lett. 2013, 107, 299–302. DOI: 10.1016/j.matlet.2013.06.021.
  • Hussain, A.; Rahman, J. U.; Ahmed, F.; Kim, J. S.; Kim, M. H.; Song, T. K.; Kim, W. J. Plate-Like Na0.5bi0.5tio3 Particles Synthesized by Topochemical Microcrystal Conversion Method. J. Eur. Ceram. Soc. 2015, 35, 919–925. DOI: 10.1016/j.jeurceramsoc.2014.10.004.
  • Wu, M. J.; Li, Y. X. Topochemical Synthesis of Plate-Like Na0.5bi0.5tio3 Templates from Bi4ti3o12. Mater. Lett. 2010, 64(10), 1157–1159. DOI: 10.1016/j.matlet.2010.02.037.
  • Jing, X. Z.; Li, Y. X.; Yin, Q. G. Hydrothermal Synthesis of Na0.5bi0.5tio3 Fine Powders. Mater. Sci.Eng. B-Solid State Mater. Adv.Technol. 2003, 99 (1–3), 506–510. DOI: 10.1016/s0921-5107(02)00515-9.
  • Lu, T. L.; Dai, J. H.; Tian, J. T.; Song, W. W.; Liu, X. Z.; Lai, L.; Chu, H. J.; Huang, X.; Liu, X. Y. Synthesis of Na0.5bi0.5tio3 Powders through Hydrothermal Method. J. Alloy. Compd. 2010, 490(1–2), 232–235. DOI: 10.1016/j.jallcom.2009.09.144.
  • Wang, Y. G.; Xu, G.; Yang, L. L.; Ren, Z. H.; Wei, X.; Weng, W. J.; Du, P. Y.; Shen, G.; Han, G. R. Hydrothermal Synthesis and Characterization of Na0.5bi0.5tio3 Microcubes. Ceram. Int. 2009, 35(4), 1657–1659. DOI: 10.1016/j.ceramint.2008.07.018.
  • Jiang, X. P.; Lin, M.; Tu, N.; Chen, C.; Zhou, S. L.; Zhan, H. Q. Simple Hydrothermal Synthesis and Sintering of Na0.5bi0.5tio3 Nanowires. J. Alloy. Compd. 2011, 509(38), 9346–9350. DOI: 10.1016/j.jallcom.2011.07.034.
  • Zhang, H. Z.; Zhu, M. K.; Hou, Y. D.; Wang, R. Z.; Yan, H.; Liu, L. Y. Structural Modulation of Na0.5bi0.5tio3 in Hydrothermal Synthesis. Int. J. Appl. Ceram. Technol. 2016, 13, 569–578. DOI: 10.1111/ijac.12523.
  • Reshetnikova, E. A.; Lisnevskaya, I. V.; Terekhin, A. I. Hydrothermal Synthesis of Sodium Bismuth Titanate Ferroelectrics, Inorg. Mater. 2020, 56, 83–90. DOI: 10.1134/s0020168520010136.
  • Liu, Y. F.; Lu, Y. N.; Dai, S. H. Hydrothermal Synthesis of Monosized Bi0.5na0.5tio3 Spherical Particles under Low Alkaline Solution Concentration. J. Alloy. Compd. 2009, 484(1–2), 801–805. DOI: 10.1016/j.jallcom.2009.05.033.
  • Kovba, L. M.; Trunov, V. K. Rentgenofazovyj Analiz (In Russian); Izdatel’stvo Moskovskogo Universiteta: Moskow, 1976.
  • Petříček, V.; Dušek, M.; Palatinus, L. Crystallographic Computing System Jana2006: General Features. Z. Kristallog, 2014, 229, 345–352. DOI: 10.1515/zkri-2014-1737

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