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Phys. Chem. – 1983. –Vol. 87. –Issue. 14. –Pp. 2458–2459.188. Koroleva, E.Y. The negative phonon confinement effect in nanoscopicsodium nitrite / E.Y. Koroleva, D. Nuzhnyy, J. Pokorny, S. Kamba, Y.A.Kumzerov, S.B. Vakhrushev, J. Petzelt // Nanotechnology. – 2009. –Vol. 20. –Issue. 39. –Pp. 395706.189. Wiltzius, P. Structure of porous Vycor glass / P. Wiltzius, F.S.
Bates, S.B.Dierker, G.D. Wignall // Phys. Rev. A. – 1987 –Vol. 36. –Issue. 6. –Pp. 2991.190. Naberezhnov, A. Structure and properties of confined sodium nitrite / A.Naberezhnov, A. Fokin, Y. Kumzerov, A. Sotnikov, S. Vakhrushev, B. Dorner //Eur.
Phys. Jour. E. – 2003. –Vol. 12. –Issue. 1. –Pp. 21–24.191. Golosovsky, I.V. Thermal motion in lead confined within a porous glass /I.V. Golosovsky, R.G. Delaplane, A.A. Naberezhnov, Y.A. Kumzerov // Phys.Rev. B. – 2004. –Vol. 69. –Issue. 13. –Pp. 132301.192. Golosovsky, I.V. Structure of MnO nanoparticles embedded intochanneltype matrices / I.V. Golosovsky, I. Mirebeau, E. Elkaim, D.A. Kurdyukov,Y.A. Kumzerov // Eur.Phys. Jour. B.: Cond.
Matt. and Complex Syst.. – 2005. –Vol. 47. –Issue. 1. –Pp. 55–62.193. Shull, C.G. Neutron diffraction by paramagnetic and antiferromagneticsubstances / C.G. Shull, W.A. Strauser, E.O. Wollan // Phys. Rev. – 1951. –Vol.83. –Issue. 2. –Pp. 333.194. Huang, X. Manufacture of porous glass / X.
Huang // J. Non-Cryst. Solids. 1989. –Vol.112. –Pp. 58-63.195. Kutnjak, Z. Calorimetric and dielectric studies of ferroelectric sodium nitriteconfined in a nanoscale porous glass matrix / Z. Kutnjak, B. Vodopivec, R., Blinc,et al. // J. Chem. Phys. – 2005. –Vol.
123. –Pp. 084708.196. Kink, M. Dielectric Properties of NaNO2 and NaNO3 Confined in PorousGlass / M. Kink, J. Bany, A. Naberezhnov // Ferroelectrics. – 2009. –Vol. 390. –Pp. 160.197. Cross, L.E. Relaxor ferroelectrics: An overview / L.E. Cross //Ferroelectrics.
– 1994. –Vol. 151. –Issue. 1. –Pp. 305.198. Ye, Z.-G. Relaxor Ferroelectric Complex Perovskites: Structure, Propertiesand Phase Transitions / Z.-G. Ye // Key Eng. Mater. – 1998. –Vol. 155 —156. –Pp. 81.128199. Stenger, C.G.F. Ordering and diffuse phase transitions in Pb(Sc0.5Ta0.5)O3ceramics / C.G.F.
Stenger, F.L. Scholten and A.J. Burggraaf // Solid StateCommun. – 1979. –Vol. 32. –Pp. 989.200. Setter, N. The contribution of structural disorder to diffuse phase transitionsin ferroelectrics / N. Setter, L. E. Cross // J. Mater. Sci. – 1980. –Vol. 15 . –Issue.10. –Pp. 2478-2482.201. Chu, F. Investigation of relaxors that transform spontaneously intoferroelectrics / F. Chu, 1. M. Reaney and N. Setter // Ferroelectrics. – 1995. –Vol.151. –Pp. 343-348.202. Chen, J. Ordering Structure and Dielectric Properties of Undoped andLa/Na‐Doped Pb(Mg1/3Nb2/3)O3 / J.
Chen, H. M. Chan, M. P. Harmer // J. Am.Ceram. Soc. – 1989. –Vol. 72. –Issue. 4. –Pp. 593-598.203. Cross, L. E. Relaxor ferroelectrics / L. E. Cross //Ferroelectrics. – 1987. –Vol. 76. –Pp. 241-267.204. Ye, Z.-G. Relaxor ferroelectric Pb(Mg1/3Nb2/3)O3: Properties and presentunderstanding / Z.-G. Ye // Ferroelectrics. – 1996. –Vol. 184. –Pp.
193-208.205. Smolenskii, G. A. Physical phenomena in ferroelectrics with diffused phasetransition / G. A. Smolenskii // J. Phys. Soc. Japan. – 1970. –Vol. 28. –Pp. 26(1970).206. Смоленский, В. А. Сегнетоэлектрики с размытым фазовым переходом /В.А. Смоленский, В.
А. Исупов, А. И. Аграновская, С. Н. Попов // ФТT. –1960. –T. 2. –Вып. 1. –С. 2906–2918207. Viehland, D. Freezing of the polarization fluctuations in lead magnesiumniobate relaxors / D. Viehland, S. J. Jang, and L. E. Cross // J. Appl. Phys. – 1990.–Vol. 68. –Issue. 6. –Pp. 2916.208.
Hochli, U. T. Orientational glasses / U. T. Hochli, K. Knorr, A. Loidl //Adv. Phys. – 1990. –Vol. 39. –Issue. 5. –Pp.405.209. Westphal, V. Diffuse phase transitions and random-field-induced domainstates of the ‘‘relaxor’’ ferroelectric PbMg1/3Nb2/3O3 / V. Westphal, W.Kleemann and M. D. Glinchuk // Phys. Rev. Lett. – 1992. –Vol. 68. –Pp. 847.210. Kleemann, W. Glassy and domain states in random dipolar systems / W.Kleemann and A.
Klossner // Ferroelectrics. – 1993. –Vol. 150. –Issue. 1. –Pp. 3545.211. Cross, L. E. Relaxor ferroelectrics / L. E. Cross //Ferroelectrics. – 1987. –Vol. 76. –Pp. 241-267.212. Bursill, L. A. Observation and analysis of nanodomain textures in thedielectric relaxor lead magnesium niobate / L. A. Bursill, H. Qian, J.-L. Peng andX.-D Fan // Physica B. – 1995. –Vol.
216. –Pp. 1-23.213. Shrout, T. R. Preparation of lead-based ferroelectric relaxors for capacitors /T. R. Shrout and A. Halliyal // Am. Ceram. Soc. Bull. – 1987. –Vol. 66. –Issue. 4.–Pp. 704-711.214. Haerlling, G. H. Ferroelectric Ceramics: History and Technology/ G. H.Haerlling // J.
Am. Ceram. Soc. – 1990. –Vol. 82. –Issue. 4. –Pp. 797-818.129215. Ye, Z.-G. Synthesis, Structure and Properties of the Magnetic RelaxorFerroelectric mPb(Fe2/3W1/3)3 [PFW] / Z.-G. Ye, K. Toda, M. Sato, E. Kita andH. Schmid // J. Korean Phys. Soc. – 1998. –Vol. 32. –Pp.1028.216. Mitoseriu, L.
Magnetic properties of PbFe2/3W1/3O3-PbTiO3 solidsolutions / L. Mitoseriu, D. Marro, A. S. Siri and P. Nanni // App. Phys. Lett. –2003. –Vol. 83. –Issue. 2. –Pp.5509.217. Mitoseriu, L. Magnetoelectric coupling in the multiferroic PbFe2/3W1/3O3 PbTiO3 system / L. Mitoseriu, D. Marre, A.
S. Siri, A. Stancu, C. E. Fedor and P.Nanni // J. Opt. and Adv. Mater. – 2004. –Vol. 6. –Issue. 2. –Pp. 723 (2004).218. Feng, L. Phase Diagram and Phase Transitions in the Relaxor FerroelectricPb(Fe2/3W1/3)O3–PbTiO3 System / L. Feng and Z.-G. Ye // J. Solid State Chem.– 2002. –Vol. 163. –Issue. 2.
–Pp. 484-490.219. Kim, Y.J. Stabilization of the perovskite phase and dielectric properties ofceramics in the Pb(Fe2/3W1/3)O3-PbTiO3 / Y.-J. Kim and S.-W. Choi //Ferroelectrics. – 1996. –Vol. 186. –Pp. 287-292.220. Yonezawa, M. Low-Firing Multilayer Capacitor Materials / M. Yonezawa //Am. Ceram. Soc. Bull. – 1983. –Vol. 62.
–Issue. 12. –Pp. 1375.221. Gagulin, V. V. Synthesis and physical properties of new high temperatureseignettomagnetics in the systems with perovskite type structure / V. V. Gagulin,S. K. Korchagina, Y. A. Shevchuk, N. V. Fadeeva and V. V. Bogatko //Ferroelectrics. – 1997. –Vol. 204. –Pp. 345.222. Mitoseriu, L. Analysis of the composition-induced transition from relaxor toferroelectric state in PbFe2/3W1/3O3–PbTiO3 solid solutions / L. Mitoseriu, A.Stancu, C. Fedor and P. M. Vilarinho // J. AppL Phys.
– 2003. –Vol. 94. –Pp.1918.223. Mitoseriu, L. Structural study of Pb(Fe2/3W1/3)O3–PbTiO3 system / L.Mitoseriu, P. M. Vilarinho, M. Viviani and J. L. Baptista // Mater. Lett. – 2003. –Vol. 57. –Issue. 3. –Pp. 609-614.224. Shannon, R. D. Revised effective ionic radii and systematic studies ofinteratomic distances in halides and chalcogenides / R. D. Shannon // Acta.Crystallogr. – 1976. –Vol.
A32. –Pp. 751.225. Gagulin, V. V. Synthesis and physical properties of new high temperatureseignettomagnetics in the systems with perovskite type structure / V. V. Gagulin,S. K. Korchagina, Y. A. Shevchuk, N. V. Fadeeva and V. V. Bogatko //Ferroelectrics.
– 1997. –Vol. 204. –Pp. 345.226. Jaffe, B. Piezoelectric Ceramics / B. Jaffe, W. R. Cook, and H. Jaff, //Academic Press, London, 1971.227. Shrout, T. R. Dielectric behavior of single crystals near the (1−X)Pb(Mg1/3Nb2/3)O3-(x) PbTiO3 morphotropic phase boundary / T. R. Shrout, Z.P. Chang, N. Kim, and S. Markgraf // Ferroelectrics Lett. – 1990. –Vol. 12. –Issue.3. –Pp. 63.228.
Tennery, V. J. Ferroelectric and Structural Properties of thePb(Sc1/2Nb1/2)1‐xTixO3 System / V. J. Tennery, K. W. Hang and R. E. Novak // J.Am. Ceram. Soc. – 1968. –Vol. 51. –Issue. 12. –Pp. 671-674.130229. L. Mitoseriu. M. M. Carnasciali, P. Piaggio, P. Nani, Appl. Phys. Len. 81,5006 (2002).230. Feng, L. Phase Diagram and Phase Transitions in the Relaxor FerroelectricPb(Fe2/3W1/3)O3-PbTiO3 System / L. Feng, Z.-G.
Ye //J. of Solid State Chem. –2002. –Vol.. 163. –Pp. 484-490.231. Mitoseriu, L.Structural study of (PbFe2/3W1/3O3)1-x-(PbTiO3)x system / L.Mitoseriu, P.M. Vilarinho, M. Viviani, J.L. Baptista // Mater. lett. - 2002. –Vol. 57.–Pp. 609-614.232. Eiras, J.A. Structural and Dielectrics Properties of (1-x) Pb (Fe2/3W1/3) O3xPbTiO3 Ceramics / J.A. Eiras, B.M. Fraygola, D. Garcia // Key EngineeringMaterials. – 2010. –Vol.
434. –Pp. 307-310.233. Fraygola, B. Dielectric Study at Microwave Frequencies of PhaseTransitions in Multiferroic Ceramics / B. Fraygola, Adelino A. Coelho, J. A. Eiras// Materials Research. – 2013. –Vol. 16. –Issue. 5. –Pp. 1134-1139.234. Fraygola, B. M. Magnetic and Dielectric Proprieties of Multiferroic (1x)Pb(Fe2/3W1/3)O3-xPbTiO3 Ceramics Prepared Via a Modified Two-stageSolid-state Reaction / B. M. Fraygola, A. Coelho, D. Garcia, J. A. Eiras //Materials Research. – 2011. –Vol.
14. –Issue. 4. –Pp. 434-441.235. Ye, Z.-G. Morphotropic domain structures and phase transitions in relaxorbased piezo-/ferroelectric (1-x)Pb(Mg1/3Nb2/3)O3-xPbTiO3 single crystals / Z.-G.Ye, M. Dong // J. Appl. Phys. - 2000. –Vol. 87. –Issue. 5. –Pp. 2312-2319.236. Kuwata, J. Phase transitions in the Pb (Zn1/3Nb2/3)O3-PbTiO3 system / J.Kuwata, K. Uchino, S. Nomura // Ferroelectrics. - 1981. – Vol. 37. –Pp.
579.237. Mitoseriu, L. Analysis of the composition-induced transition from relaxor toferroelectric state in PbFe2/3W1/3O3 – PbTiO3 solid solutions / L. Mitoseriu, A.Stancu, C. Fedor, P.M. Vilarinho // J. Appl. Phys. - 2003. –Vol. 94. –Issue. 3. –Pp.1918-1925.238. Li, Z. Core–shell microstructures in 0.68Pb(Fe2/3W1/3)O3–0.32PbTiO3 at themorphotropic phase boundary / Z. Li, A. Wu, P.















