Диссертация (1145320), страница 29
Текст из файла (страница 29)
и др. Synthesis, Characterization, Photophysical, and TheoreticalStudies of Supramolecular Gold(I)−Silver(I) Alkynyl-Phosphine Complexes //Organometallics. 2009. Т. 28. № 5. С. 1369–1376.204. Koshevoy I.O. и др. Supramolecular Luminescent Gold(I)−Copper(I) Complexes:Self-Assembly of the Au x Cu y Clusters inside the [Au 3 (diphosphine) 3 ] 3+Triangles // Inorg. Chem. 2008.
Т. 47. № 20. С. 9478–9488.205. Koshevoy O. и др. Self-Assembly of Supramolecular Luminescent AuI–CuIComplexes: “Wrapping” an Au6Cu6 Cluster in a [Au3(diphosphine)3]3+“Belt” //Angew. Chem. Int. Ed. 2008. Т. 47. С. 3942 –3945.206. Pakiari A.H., Jamshidi Z., Ag A. Nature and Strength of M - S Bonds ( M ) Au ,Ag , and Cu ) in Binary Alloy Gold Clusters // J. Phys.
Chem. A. 2010. Т. 112. С.9212–9221.207. Luo Y.-R. Comprehensive handbook of chemical bond energies. : Boca Raton:CRC Press., 2007. 1688 С.208. Povolotskiy A. и др. Laser-induced synthesis of metallic silver-gold nanoparticles207encapsulated in carbon nanospheres for surface-enhanced Raman spectroscopy andtoxins detection // Appl. Phys.
Lett. 2013. Т. 103. № 11.209. Manshina A.A. и др. Laser-induced transformation of supramolecular complexes:approach to controlled formation of hybrid multi-yolk-shell Au-Ag@a-C:Hnanostructures // Sci. Rep. 2015. Т. 5. № April. С. 12027/1-11.210. Bashouti M.Y. и др. Spatially-controlled laser-induced decoration of 2D and 3Dsubstrates with plasmonic nanoparticles // RSC Adv. 2016.
Т. 6. № 79. С. 75681–75685.211. Bashouti M.Y. и др. Direct Laser Writing of µ-chips Based on Hybrid C-Au-AgNanoparticles for Express Analysis of Hazardous and Biological Substances // LabChip. 2015. С. 1742–1747.212. Povolotskiy A. и др. 2D and 3D laser writing for integrated optical elementscreation // Proc. 2005 IEEE/LEOS Work. Fibres Opt.
Passiv. Components. 2005. Т.1462107. С. 92–97.213. Vasileva A.A. и др. Structural features of silver-doped phosphate glasses in zoneof femtosecond laser-induced modification // J. Solid State Chem. 2015. Т. 230. С. 56–60.214. Маньшина А.А., Поволоцкий А.В., Грунский О.С. Формирование доменнойструктуры в монокристаллах ниобата лития электрооптическим методом //Вестник Санкт-Петербургского университета.
Серия 4 физика, химия. 2010. Т. 1.С. 65–73.215. Man’shina A.A. и др. The formation of optical phase structures in the volume ofphosphate glasses by means of thermal diffusion caused by the action of femtosecondlaser radiation // J. Opt. Technol. 2015. Т. 82. № 2. С. 120.216.
Палкина К.К. Кристаллохимия конденсированных фосфатов // Изв. АНСССР, Сер. неорган. мат. 1978. Т. 14. № 5. С. 789–802.217. Мурин И.В. и др. Подвижность носителей тока и структура щелочных стёколсистем Me2О–Р2O5 и Me2О–SiO2 (Mе = Li, Na, K). // Вестник СанктПетербургского университета. Серия 4 Физика. Химия. 2012. Т. 4. № 75–88.218. Соколов И.А.
Стеклообразные твердые электролиты. Структура и природа208проводимости. : СПб: Изд-во Политехн. ун-та, 2010. 392 С.219. Ван Везер Д.Р. Фосфор и его соединения. : М.: ИЛ, 1962. 687 С.220. Неверов С.Л. Влияние перестройки в расплавах на анионное строениестеклообразных фосфатов щелочных металлов. // 1994.221. Little D.J. и др. Mechanism of femtosecond-laser induced refractive index changein phosphate glass under a low repetition-rate regime // J. Appl. Phys. 2010.
Т. 108. №3. С. 33110.222. Kumar S., Murugavel S., Rao K.J. Absence of Germanate Anomaly in TernaryLithium Germanophosphate Glasses: Modification Behavior of Mixed Glass System ofStrong and Fragile Formers // J. Phys. Chem. B. 2001.
Т. 105. № 25. С. 5862–5873.223. Sridarane R. и др. Investigations on temperature dependent structural evolution ofNaPO 3 glass // J. Therm. Anal. Calorim. 2004. Т. 75. № 1. С. 169–178.224. Voron’ko Y.K., Sobol’ A.A., Shukshin V.E. Structure of Vanadium-Oxygen andPhosphorus-Oxygen Groups in Molten Alkali and Alkaline-Earth Vanadates andPhosphates: A High-Temperature Raman Scattering Study // Inorg. Mater. 2005.
Т. 41.№ 10. С. 1097–1106.225. Koudelka L. и др. Study of lithium–zinc borophosphate glasses // J. Mater. Sci.2006. Т. 41. № 14. С. 4636–4642.226. Popovic´ L., Waal D. de, Boeyens J.C.A. Correlation between Ramanwavenumbers and P-O bond lengths in crystalline inorganic phosphates // J. RamanSpectrosc. 2005. Т. 36. С. 2–11.227. Kowada Y., Tatsumisago M., Minami T. Raman Spectra of Rapodly QuenchedGlasses in the Systems Li3BO3-Li4SiO4-Li3PO4 and Li4B2O5-Li6Si2O7-Li4P2O7 //J. Phys. Chem. 1989. Т. 93. С. 2147.228. Little D.J. и др. Mechanism of femtosecond-laser induced refractive index changein phosphate glass under a low repetition-rate regime // J.
Appl. Phys. 2010. Т. 108. С.33110.229. Dvinskikh S.V. и др. Microscopic structure of the glassy ionic conductorx·LiF+(1−x)·LiPO3 from NMR data // J. Non. Cryst. Solids. 1998. Т. 240. № 1–3. С.79–90.209230. Kartini E. и др. Recent studies on lithium solid electrolytes (LiI)x(LiPO3)1−x forsecondary battery // J.
Phys. Soc. Japan. 2010. Т. 79SA. С. 54–58.231. Stranford G.T., Condrate R.A. Β-NbPO5, The infrared and Raman spectra of βTaP05 and // J. Mater. Sci. Lett. 1984. Т. 3. С. 303–306.232. Bart S., Feltz A. Structure and ionic conduction in solids. VII. Ion conductingglasses in the system Na2O – Nb2O5 – P2O5 // Solid state Ionics. 1989. Т. 34. С. 41–45.233.
Ольшин П.К. и др. Исследование структурных и оптических особенностейлитий-фосфатных стекол // Современные проблемы науки и образования. 2014. Т.5. С. 803.234. Mohan N.K. и др. Spectroscopic and dielectric studies on MnO doped PbONb2O5-P2O5 glass system, // J. Alloys Compd. 2008. Т. 458. С. 66–76.235. Li J. и др. Optical bistability for ZnO-Nb2O5-TeO2 glasses // Opt. Mater. (Amst).2004. Т. 25.
С. 401–405.236. Jazouli A. El и др. Structural Investigation of Gasses Belonging to the Na2ONb2O5-P2O5 System // J. Solid State Chem. 1998. Т. 73. С. 433–439.237. Uchino T., Yoko T. Structure and vibrational properties of alkali phosphate glassesfrom ab initio molecular orbital calculations // J. Non. Cryst. Solids.
2000. Т. 263–264.С. 180–188.238. Manshina A.A. и др. Structure of lithium-niobium phosphate glass promising foroptical phase elements creation with femtosecond laser radiation // Glas. Phys. Chem.2015. Т. 41. № 6. С. 572–578.239. Allsop T. и др. Inscription and characterization of waveguides written intoborosilicate glass by a high-repetition-rate femtosecond laser at 800 nm // Appl. Opt.2010. Т. 49.
С. 1938–1950.240. Sakakura M. и др. Heating and rapid cooling of bulk glass after photoexcitation bya focused femtosecond laser pulse // Opt. Express. 2007. Т. 15. С. 16800–16807.241. Graf R. и др. Pearl-chain waveguides written at megahertz repetition rate // Appl.Phys. B Lasers Opt.
2007. Т. 87. С. 21–27.242. Булгаков А.В., Булгакова Н.М., И.М. Б. Синтез наноразмерных материалов210при воздействии мощных потоков энергии на вещество. : Новосибирск: Институттеплофизики СО РАН, 2009. 462 С.243. Melnikov A., Povolotskiy A., Bovensiepen U. Magnon-Enhanced PhononDamping at Gd(0001) and Tb(0001) surfaces // Ultrafast Phenom. Xvi. 2009. Т.
92. С.244–246.244. Melnikov A. и др. Magnon-enhanced phonon damping at Gd(0001) and Tb(0001)surfaces using femtosecond time-resolved optical second-harmonic generation // Phys.Rev. Lett. 2008. Т. 100. № 24. С. 1–4.245. Melnikov A. и др. Ultrafast dynamics at lanthanide surfaces: microscopicinteraction of the charge, lattice and spin subsystems // J. Phys. D. Appl. Phys. 2008. Т.41. № 16.
С. 164004.246. Kolesnikov I.E. и др. Photoluminescence properties of Eu 3+ ions in yttrium oxidenanoparticles: defect vs. normal sites // RSC Adv. 2016. Т. 6. № 80. С. 76533–76541.247. Шарова И.С. и др. Люминесцентные свойства халькогенидных стекол системGa-Ge-S:Er3+ и Ga-Ge-SI-S:Er3+ // Вестник Санкт-Петербургского университета.Серия 4 физика, химия.
2006. Т. 4. С. 32–39.248. Tverjanovich A. и др. Up-conversion luminescence efficiency in Er-dopedchalcogenide glasses // J. Non. Cryst. Solids. 2003. Т. 326–327. С. 311–315.249. Povolotskiy A. и др. Er3+ as glass structure modifier of Ga–Ge–S chalcogenidesystem // Appl. Phys. A. 2009. Т. 96. № 4. С. 887–891.250. Povolotskiy A. V и др. Photoinduced phenomena in thin films of chalcogenidesystem Ga-Ge-S: a role of oxidation // Laser Phys. Lett. 2006. Т.
3. № 4. С. 190–194.251. Nemov S.A. и др. Reflectance of a PbSb2Te4 crystal in a wide spectral range //Semiconductors. 2016. Т. 50. № 10. С. 1322–1326..