[1] V. Buscaglia, M.T. Buscaglia, G. Canu, Encycl. Mater. Tech. Ceram. Glas. 3(2021) 311-344. [2] N. Bao, L. Shen, G. Srinivasan, K. Yanagisawa, A. Gupta, J. Phys. Chem. C 112 (2008) 8634-8642. [3] B. Jiang, J. Iocozzia, L. Zhao, H. Zhang, Y.-W. Harn, Y.Chen, Z. Lin, Chem. Soc. Rev. 48(2019) 1194-1228. [4] A. Karvounis, F. Timpu, V.V.Vogler-Neuling, R.Savo, R. Grange, Adv. Opt. Mater. 8(2020) 2001249. [5] V. Buscaglia, C.A. Randall, J. Eur. Ceram.Soc. 40(2020) 3744-3758. [6] G. Arlt, D. Hennings, G. De With, J. Appl. Phys. 58(1985) 1619-1625. [7] L. Mitoseriu, L.P.Curecheriu, in: M. Algueró, J.M. Gregg, L. Mitoseriu (Eds.), Nanoscale Ferroelectrics and Multiferroics, John Wiley & Sons, Ltd, Chichester, UK, 2016, pp. 473-511. [8] L. Lv, Y. Wang, L. Gan, Q. Liu, J.-P. Zhou, J. Mater. Sci. Mater. Electron. 29(2018) 14883-14889. [9] J.-R. Yoon, M.K. Kim, J. Electr. Eng. Technol. 15(2020) 2685-2690. [10] Z. Yao, C. Wang, Y. Li, H.K. Kim, N.Y. Kim, Nanoscale Res. Lett. 9(2014) 1-6. [11] G. Tanvir, M. Saleem, H. Jabbar, A. Hamza, M. Asif Hussain, M. Zubair Khan, A.H. Baluch, M. Irfan, M. Shoaib Butt, F. Naeem, A. Ghaffar, M. Ahsan, M. Asif Rafiq, R. Ahmed Malik, A. Maqbool, Mater. Sci. Eng. B 287 (2023) 116100. [12] H. Xu, L. Gao, Mater. Lett. 58(2004) 1582-1586. [13] R. Licheri, S. Fadda, R. Orrù, G. Cao, V. Buscaglia, J. Eur. Ceram.Soc. 27(2007) 2245-2253. [14] M.B. Fraga, J.-P. Delplanque, N.Yang, E.J. Lavernia, T.C. Monson, Ceram. Int. 42(2016) 13868-13875. [15] K. Tsuji, A. Ndayishimiye, S. Lowum, R. Floyd, K. Wang, M. Wetherington, J.P. Maria, C.A. Randall, J. Eur. Ceram.Soc. 40(2020) 1280-1284. [16] Q. Jin, L. Zhao, X. Zhang, R. Zhang, B. Cui, J. Mater. Sci.: Mater. Electron. 32(2021) 8043-8053. [17] S.H. Choi, Y.-S. Lee, H.Kwak, H.J. Jung, M. Kim, S. Cho, J.H. Yoon, J.W. Choi, M.S. Kim, J.H. Kim, I. Jo, Y. Kim, M. Choi, J. Asian Ceram. Soc. 10(2022) 713-721. [18] S. Somiya, S. Komarneni, R. Roy, Netherlands, 2013. [19] J. Zheng, J.S. Reed, J. Am. Ceram.Soc. 72(1989) 810-817. [20] F.F. Lange, J. Eur. Ceram.Soc. 28(2008) 1509-1516. [21] M. Azar, P. Palmero, M. Lombardi, V. Garnier, L. Montanaro, G. Fantozzi, J. Chevalier, J. Eur. Ceram.Soc. 28(2008) 1121-1128. [22] A. Renteria, L.F. Garcia, V.H. Balcorta, D. Ortiz, L.C. Delfin, J. Regis, M. Marcos- Hernández, D. Espalin, T.L. (Bill) Tseng, Y.Lin, Ceram. Int. 47(2021) 18477-18486. [23] K. Kato, F. Dang, K.I. Mimura, Y. Kinemuchi, H. Imai, S. Wada, M. Osada, H. Haneda, M. Kuwabara, Adv. Powder Technol. 25(2014) 1401-1414. [24] V.A. Lukacs, G. Caruntu, O. Condurache, C.E. Ciomaga, L.P. Curecheriu, L. Padurariu, M. Ignat, M. Airimioaei, G. Stoian, A. Rotaru, L. Mitoseriu, Ceram. Int. 47(2021) 18105-18115. [25] M. Dondi, in: Encyclopedia of Materials: Technical Ceramics and Glasses, Elsevier, Netherlands, 2021, pp. 136-145. [26] K. Miyake, Y. Hirata, T. Shimonosono, S. Sameshima, Materials (Basel) 11(2018) 1137. [27] P. Loidolt, Modeling of Powder Compaction, Graz University of Technology, 2018 https://diglib.tugraz.at/download.php?id=5cc03c916516c&location= browse. [28] F.Y. Fraige, P.A. Langston, G.Z. Chen, Powder Technol. 186(2008) 224-240. [29] D. Wang, M. Hermes, R. Kotni, Y. Wu, N. Tasios, Y. Liu, B. De Nijs, E.B.Van Der Wee, C.B. Murray, M. Dijkstra, A. Van Blaaderen, Nat. Commun. 9(2018) 1-10. [30] A. Hafez, Q. Liu, T. Finkbeiner, R.A. Alouhali, T.E. Moellendick, J.C. Santamarina, Sci. Rep. 11(2021) 1-11. [31] A. Lu, X. An, Metall. Mater. Trans. A 49 (2018) 4838-4848. [32] S. Adireddy, C. Lin, B. Cao, W. Zhou, G. Caruntu, Chem. Mater. 22(2010) 1946-1948. [33] S.S. Parizi, A. Mellinger, G. Caruntu, ACS Appl. Mater. Interfaces 6 (2014) 17506-17517. [34] D. Caruntu, T. Rostamzadeh, T. Costanzo, S. Salemizadeh Parizi, G. Caruntu, Nanoscale 7 (2015) 12955-12969. [35] T.-M. Usher, B.Kavey, G. Caruntu, K. Page, A.C.S. Appl, Nano Mater. 3(2020) 9715-9723. [36] A. Testino, M.T. Buscaglia, M. Viviani, V. Buscaglia, P. Nanni, J. Am. Ceram.Soc. 87(2004) 79-83. [37] A. Testino, M.T. Buscaglia, V. Buscaglia, M. Viviani, C. Bottino, P. Nanni, Chem. Mater. 16(2004) 1536-1543. [38] H.T. Kim, Y.H. Han, Ceram. Int. 30(2004) 1719-1723. [39] X.-H. Wang, X.-Y. Deng, H.-L. Bai, H. Zhou, W.-G. Qu, L.-T. Li, I.-W. Chen, J. Am. Ceram. Soc. 89(2006) 438-443. [40] T. Hoshina, K. Takizawa, J. Li, T. Kasama, H. Kakemoto, T. Tsurumi, Jpn. J. Appl. Phys. 47(2008) 7607-7611. [41] Y. Huan, X. Wang, J. Fang, L. Li, J. Am. Ceram.Soc. 96(2013) 3369-3371. [42] J.L. Jones, E.B. Slamovich, K.J. Bowman, J. Appl. Phys. 97(2005) 034113. [43] G.P. Khanal, S. Kim, I. Fujii, S. Ueno, C. Moriyoshi, Y. Kuroiwa, S. Wada, J. Appl. Phys. 124(2018) 034102. [44] N. Ma, B.P. Zhang, W.G. Yang, D. Guo, J. Eur. Ceram.Soc. 32(2012) 1059-1066. [45] V.A. Lukacs, M. Airimioaei, L. Padurariu, L.P. Curecheriu, C.E. Ciomaga, A. Bencan, G. Drazic, M. Avakian, J.L. Jones, G. Stoian, M. Deluca, R. Brunner, A. Rotaru, L. Mitoseriu, J. Eur. Ceram.Soc. 42(2022) 2230-2247. [46] D.S. Keeble, P.A. Thomas, J. Appl. Crystallogr. 42(2009) 480-484. [47] T.T.A.Lummen, Y. Gu, J.Wang, S. Lei, F. Xue, A. Kumar, A.T. Barnes, E. Barnes, S. Denev, A. Belianinov, M. Holt, A.N. Morozovska, S.V. Kalinin, L.-Q. Chen, V. Gopalan, Nat. Commun. 5(2014) 3172. [48] L. Curecheriu, S.-B.B. Balmus, M.T. Buscaglia, V. Buscaglia, A. Ianculescu, L. Mitoseriu, J. Am. Ceram. Soc. 95(2012) 3912-3921. [49] Y. Tan, J. Zhang, Y. Wu, C. Wang, V. Koval, B. Shi, H. Ye, R. McKinnon, G. Viola, H. Yan, Sci. Rep. 5(2015) 15-21. [50] A .Y. Emelyanov, N.A . Pertsev, S. Hoffmann-Eifert, U. Böttger, R. Waser, J. Electroceram. 9(2002) 5-16. [51] M.H. Frey, Z. Xu, P. Han, D.A. Payne, Ferroelectrics 206 (1998) 337-353 . |