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//Кристаллография. – 1997. – Т. 42. – №3. – С. 421-426.52 Borisov, S.A. Critical scattering of neutrons in uniaxial relaxor Sr0.6Ba0.4Nb2O6 /S.A. Borisov, N.M. Okuneva, S.B. Vakhrushev and A.A. Naberezhnov // Physics of theSolid State. – 2013. – Vol. 55. – Pp. 295–301.53 Chillal, S. Phase transition of chemically doped uniaxial relaxor ferroelectric / S.Chillal, D. Koulialias, S.N. Gvasaliya, et. al.
// J. Phys.: Condens. Matter. – 2015. – Vol.27. – Pp. 435901-9.54 Ondrejkovic, P. Dynamics of nanoscale polarization fluctuations in a uniaxialrelaxor / P. Ondrejkovic, M. Kempa, J. Kulda, et. al. // Phys. Rev. Lett. – 2014. – Vol.113. – Pp. 167601-6.9555 Loktev, V.M. Pecular physical properties and the colossal magnetoresistance ofmanganites (Review) / V.M.
Loktev and Yu.G. Pogorelov // Low Temperature Physics.– 2000. – Vol. 26. – Issue 3. – Pp. 171–193.56 Mamin, R.F. Giant dielectric susceptibility and magnetocapacitance effect inmanganites at room temperature / R.F. Mamin, T. Igami, G. Marton, et. al. // Journal ofExperimental and Theoretical Physics Letters.
– 2008. – Vol. 86. – Issue 10. – Pp. 643–646.57 Wollan, E.O. Neutron diffraction study of the magnetic properties of the series ofperovskite-type compounds [(1−x)La, xCa]MnO3 / E.O. Wollan and W.C. Koehler //Phys. Rev. – 1955. – Vol. 100. – Issue 2.
– Pp. 545–563.58 Fesenko, E.G. The family of perovskite and ferroelectricity / E.G. Fesenko //Moscow. Atomizdat. – 1972.59 Mukhin, A.A. Magnetic and structural transitions in La1–xSrxMnO3: Phase T – xdiagram / A.A. Mukhin, V.Yu. Ivanov, V.D. Travkin, et. al. // Journal of Experimentaland Theoretical Physics Letters. – 1998. – Vol.
68. – Issue 4. – Pp. 356–362.60 Yamada, Y. Polaron ordering in low-doping La1–xSrxMnO3 / Y. Yamada, O. Himo,S. Nohdo, et al. // Phys. Rev. Lett. – 1996. Vol. 77. – Issue 5. – Pp. 904 –907.61 Nagaev, E.L. Lanthanum manganite and other magnetic conductors with a giantmagnetic resistance / E.L. Nagaev // UFN. – 1996. – Vol. 166. – Issue 8. – Pp. 833–858.62 Kugel’, K.I. The ahn-Teller effect and magnetism: transition metal compounds /K.I. Kugel’ and D.I.
Homskii // Physics-Uspekhi. – 1982. – Vol. 25. Pp. 231–256.63 Kawano, H. Ferromagnetism-induced reentrant structural transition and phasediagram of the lightly doped insulator La1–xSrxMnO3 (x ≤ 0.17) / H. Kawano, R.Kajimoto, M. Kubota, et al. // Phys. Rev. B. – 1996. – Vol. 53. – Issue 22. – Pp. R14709–R14713.64 Nojiri, H. Two ferromagnetic phases in La1–xSrxMnO3 (x ~ 1/8) / H. Nojiri, K.Keneko, M. Motokawa, et al. // Phys. Rev.
B. – 1999. – Vol. 60. – Issue 6. – Pp. 4142 –4148.9665 Geck, J. Rearrangement of the orbital-ordered state at the metal insulator transitionLa7/8Sr1/8MnO3 / J. Geck, P. Wochner, D. Bruns, et al. // Phys. Rev. B.– 2004. – Vol. 69.– Issue 10. – Pp. 104413.66 Cox, D.E. Vertical boundary at x ≈ 0.11 in the structural phase diagram of the La1–xSrxMnO3system (0.08 ≤ x ≤ 0.125) / D.E. Cox, T. Iglesias and E.
Moshopoulou //Phys. Rev. B. – 2001. – Vol. 64. – Issue 2. – Pp. 024431.67 Bogdanova, Kh.G. High-frequency ultrasound structural phase transition in a singlecrystal La0.875Sr0.125MnO3 / Kh.G. Bogdanova, A.R. Bulatov, V.A. GolenischevKutuzov, et. al. // Physics of the Solid State. – 2007. – Vol. 49. – Issue 3. – Pp. 519–522.68 Li, H.-F. Crystal and magnetic structure of single-crystal La1–xSrxMnO3 (x ≈ 1/8) /H.-F. Li, Y. Su, Y.G.
Xiao, et al. // The European Physical Journal B. – 2009. – Vol. 67.– Issue 2. – Pp. 149–157.69 Monot-Lafez, I. Correlation between structural defects and properties in large LaSr-Mn-O single crystals / I. Monot-Lafez, M. Dominiczak, F. Giovannelli, et al. //Journal of Applied Physics. – 2007. – Vol. 101. – Issue 5. Pp. 053502.70 Dagotto, E. Colossal magnetoresistant materials: the key role of phase separation /E. Dagotto, T. Hotta and A. Moreo // Phys.
Rep. – 2001. – Vol. 344. – Issue 1–3. – Pp.1–153.71 Pan`kova, S.V. The giant dielectric constant of opal containing sodium nitratenanoparticles / S.V. Pan`kova, V.V. Poborchii and V.G. Solov’evy // Journal of Physics:Condensed Matter. – 1996. – Vol. 8. – Pp. L203–L206.72 Colla, E.V.Ferroelectric properties of nanosize KDP particles / E.V. Colla, A.V.Fokin and Yu.A. Kumzerov // Solid State Communications. – 1997. – Vol. 103.
– Pp127-130.73 Барышников, С.В. Диэлектрические и калориметрические исследованияKNO3 в порах наноразмерных силикатных матриц MCM-41 / С.В. Барышников,Е.В. Чарная, А.Ю. Милинский, Ю.А. Шацкая, D. Michel // Физика Твердого Тела.– 2012. – Т. 54. – № 3. – С. 594-599.9774 Dominik, D. Porous glasses for optical sensors / D. Dominik and B.
Procyk //Photonics Applications in Astronomy, Communications, Industry, and High-EnergyPhysics Experiments IV, edited by Ryszard S. Romaniuk, Proc. of SPIE. – 2006. – Vol.6159. – article ID 615923. – 6 pp.75 Evstrapov, A. Porous glasses as a substrate for sensor elements / A. Evstrapov, N.Esikova, G. Rudnitskaya and T.V. Antropova // Optica Applicata. – 2010. – Vol.
40. –Issue 2. – Pp. 333-340.76 Guo, Y. The effect of TiO2 doping on the catalytic properties of nano-Pd/SnO2catalysts during the reduction of nitrate / Y. Guo, J. Cheng, Y. Hu et al. //Appl.Catalysis B-environmental. – 2012. – Vol. 125. – Pp. 21-27.77 Firouzabadi, H. Palladium nano-particles supported on agarose as efficient catalystand bioorganic ligand for C-C bond formation via solventless Mizoroki-Heck reactionand Sonogashira-Hagihara reaction in polyethylene glycol (PEG 400) / H.
Firouzabadi,N. Iranpoor, F. Kazemi et al. // Journal of molecular catalysis A-chemical. – 2012. –Vol. 357. – Pp. 154-161.78 Kumzerov, Yu.A. Effect of restricted geometry on superconducting properties oflow-melting metals / Yu.A. Kumzerov and A.A. Naberezhnov // Low TemperaturePhysics. – 2016. – Vol. 42. – Issue 11. – Pp. 1028-1040.79 Aniwat, T. Lasing oscillation in a three-dimensional photonic crystal nanocavitywith a complete bandgap / T. Aniwat, S. Ishida, D.
Guimard, M. Nomura, S. Iwamotoand Y. Arakawa // Nature Photonics. – 2011. – Vol. 5. – Pp. 91–94.80 Мазурин, О.В. Двухфазные стекла. Структура, свойства, применение / О.В.Мазурин, Г.П. Роскова, В.И. Аверьянов, Т.В. Антропова // Л.
Наука. – 1991. – 276с.81anowski, F. Poröse Gläser / F.anowski and W. Heyer // Herstellung,Eigenschaften und Anwendung, Deutscher Verlag für Grundstoffindustrie. Leipzig. –1982. – 274 p.82 anowski, F. Handbook of Porous Solids / F. anowski and D. Enke // in: F. Schüth,K.S.W. Sing, J.Weitkamp (Eds.). Wiley-VCH.
Weinheim. – 2002. – 1432 p.9883 Kumzerov, Y. Nanostructures within porous material / Y. Kumzerov and S.Vakhrushev // Encyclopedia of Nanoscience and Nanotecnology. – 2003. – Vol. 10. –Pp. 1-39.84 Korotkov, L.N. Transisions to the relaxor and diapole-glass states in mixed crystalsof the potassium dihydrogen phosphate family / L.N. Korotkov and L.A.
Shuvalov //Crystallography reports. – 2004. – Vol. 49. – Issue 5. – Pp. 832-842.85 Ono, Y. Phase Transitions in Mixed Crystal System K1-x(NH4)xH2PO4 / Y. Ono, T.Hikita and T. Ikeda // J. Phys. Soc. Jpn. – 1987. – Vol. 56. – Issue 2. – Pp. 577.86 Kwon, Oh.J. Proton glass behavior and phase diagram of the K1-x(NH4)xH2PO4system / Oh.J. Kwon and J.-J.
Kim // Physical Review B. – 1993. – Vol. 48. – Issue 9. –Pp. 6639-6642.87Короткова,Т.Н.Влияниесоставанатемпературу«статического»замораживания протонных стекол семейства КН2РО4 / Т.Н. Короткова, Л.Н.Короткое, Л.А. Шувалов, P.M. Федосюк // Кристаллография. – 1996. – Т. 41.
– №3. – С. 505-509.88 Gridnev, S.A. Phase coexistence in mixed K1-x(NH4)xH2PO4 crystals / S.A.Gridnev, L.N. Korotkov, L.A. Shuvalov and R.M. Fedosyuk // Ferroelectrics. – 1996. –Vol. 175. – Pp. 107-110.89 Коротков, Л.Н. Физические свойства водородсодержащих смешанныхкристаллов семейства дигидрофосфата калия / Л.Н. Коротков // Альтернативнаяэнергетика и экология. – 2002.
– № 5. – С. 43-60.90 Colla, E.V. Ferroelectric phase transitions in materials embedded in porous media /E.V. Colla, A.V. Fokin, E.Yu. Koroleva, Yu.A. Kumzerov, S.B. Vakhrushev and B.N.Savenko // Nanostructured materials. – 1999. – Vol. 12. – Pp. 963-966.91 Zhong, W.L. Phase transition in PbTiO3 ultrafine particles of different sizes / W.L.Zhong, B.
Jiang, V.L. Zhang, J.M. Ma, H.M. Cheng and Z.H. Yang // J.Phys.:Cond.Matter. – 1993. – Vol 5. – Pp. 2619.9992 Uchino, K. Dependence of the crystal structure on particle size in barium titanate /K. Uchino, E. Sadanaga, T. Hirose // J. Am. Ceram. Soc. – 1989. – Vol. 72. – Issue 8. –Pp. 1555-1558.93 Ishikawa, K. Size effect on the ferroelectric phase transition in PbTiO3 ultrafineparticles / K.
Ishikawa, K. Yoshikawa and N. Okada // Phys. Rev. B. – 1988. – Vol. 37.– Issue 10. – Pp. 5852-5855.94 Shih, W.Y. Size dependence of the ferroelectric transition of small BaTiO3particles: Effect of depolarization / W.Y. Shih, W.-H. Shih and I.A. Aksay // Phys. Rev.B.
– 1994. – Vol. 50. – Issue 21. – Pp. 15575-15585.95 Лайнс, М. Сегнетоэлектрики и родственные им материалы / М. Лайнс, А.Гласс. // М.: Мир. – 1980. – 736 с.96 Tarnavich, V. Effect of restricted geometry on structural phase transitions inKH2PO4and NH4H2PO4 crystals / V. Tarnavich, L. Korotkov, O. Karaeva, A.Naberezhnov and E. Rysiakievicz-Pasek // Optica Applicata. – 2010. – Vol. 40. – Issue2. – Pp. 305-309.97 Balamurugan, B. Size-induced stability and structural transition in monodispersedindium nanoparticles / B.
Balamurugan, F.E. Kruis, S.M. Shivaprasad, O. Dmitrieva andH. Zähres // Appl. Phys. Lett. – 2005. – Vol. 86. – Article ID 083102. – 3 pp.98 Lee, M.K. Structural variations in nanosized confined gallium / M.K. Lee, C. Tien,E.V. Charnaya, H.-Sh. Sheu and Yu.A. Kumzerov // Phys. Lett. A.















