Диссертация (1150375), страница 21
Текст из файла (страница 21)
Chem. 2006. 7. 266-272.27.Александров В.В. Кислотность неводных растворов. Харьков: Вища школа. 1981. 152 с.28.Biliskov N., Baranovic G. Infrared spectroscopy of liquid water–N,N-dimethylformamidemixtures // J. Mol. Liq. 2009. 144. 155-162.29.Sengwa R.J., Khatri V., Sankhla S. Structure and hydrogen bonding in binary mixtures of N,N-dimethylformamide with some dipolar aprotic and protic solvents by dielectric characterization // Ind.J. Chem.
2009. 48A. 512-519.30.Hu Z., Li H., Wang C., Wu T., Han S. The methyl C–H blueshift in N,N-dimethylformamide-water mixtures probed by two-dimensional Fourier-transform infrared spectroscopy // J. Chem. Phys.2006. 124 (24). 244502.31.Guo-Zhu J., Ka-Ma H., Li-Jun Y., Xiao-Qing Y. Composition-dependent dielectric properties ofDMF-water mixtures by molecular dynamics simulations // Int. J. Mol. Sci. 2009. 10 (4).
1590–1600.32.Rohdewald M. M. Dielectric constants of water-amide systems // J. Phys. Chem. 1973. 77 (3).373-377.33.Zaichikov A.M. The thermodynamic properties of water-dimethylacetamide system // Russ. J.Phys. Chem. 1994. 69 (11). 1766-1770.12534.Winnik F.M., Ottaviani M.F. Cononsolvency of poly(N-isopropylacrylamide): a look at spin-labeled polymers in mixtures of water and tetrahydrofuran // Macromolecules. 1993. 26. 4577-4585.35.Гусев И. М. Формирование твёрдой фазы в тройных галогенидных водно-солевыхсистемах, содержащих катионы тетраалкиламмония MX2 - NR4X - H2O (M = Cd, Cu, Co, Mg; X =Br, Cl; R = Me, Et, n-Bu). Дисс.
на соиск. уч. степ. канд. наук. СПб. 2011.36.Sorensen C. M. Dynamic light-scattering of tetrahydrofuran and water solutions // J. Phys. Chem.1988. 92 (8). 2367–2370.37.Gough S.R. On pseudo-clathrate hydrate structure in aqueous solutions of tetrahydrofuran // J.Solut. Chem. 1979. 8 95). 371-375.38.Cini B., Tadei G. Magnetic properties of water-1, 4 dioxane mixtures // Nuovo Cim.
1964. XLIII.354-357.39.Хрипун М.К. Структурно-вынужденные процессы в концентрированных растворахэлектролитов. Дисс. на соиск. уч. степ. док. наук, СПб, 1993.40.Мищенко К.П., Полторацкий Г.М. Вопросы термодинамики и строения водных иневодных растворов электролитов. Л.: Химия. 1968.41.Дорофеева Н.Г., Ковальская В.П., Фиалков Ю.А. // Ж.
Общ. химии. 1977. 43 (4). 423.42.Репкин Г.И. Влияние водно-метанольных растворителей на термодинамические икинетические параметры реакций комплексообразования никеля (II) с этилендиамином и 2,2' –дипиридилом. Дисс. на соиск. уч. степ. канд. наук.
Иваново. 1984.43.Леденков С.Ф. Влияние сольватации на диссоциацию и комплексообразование L-тирозина и дофамина с ионами Ni(II) и Cu(II) в водно-этанольных средах. Дисс. на соиск. уч.степ. док. наук. Иваново. 2005.44.Граждан К.В. Комплексообразование железа(III) с никотинамидом в водных растворахэтанола и диметилсульфоксида. Дисс. на соиск. уч. степ.
канд. наук. Иваново. 2009.45.Березин Б.Д. Проблемы сольватации и химии координационных соединений в растворах// Изв. вузов. Химия и хим. технология. 2008. 51 (9). 11-24.46.Ohtaki, H. Ionic Solvation in Aqueous and Nonaqueous Solutions // Monats. fur Chem. 2001.132 (11).
1237-1268.47.Debye P., Huckel E. The theory of electrolytes/ // Phys. Z. 1923. 24. 185-206.48.Frank H.S., Wen W-Y. Ion-solvent interaction structural aspects of ion-solvent interaction inaqueous solutions: A suggested picture of water structure // Disc. Farad. Soc.
1957. 24. 133-140.49.Samoylov O.Y. A new approach to the study of hydration of ions in aqueous solutions // Disc.Farad. Soc. 1957. 24. 141-146.50.Jalilehvand F. Structure of hydrated ions and cyano complexes by X-absorption spectroscopy.Doctoral Thesis. KTH. Stockholm. 2000.12651.De Valera, E., Feakins, D., Waghorne, W.E. Relationship between the enthalpy of transfer of asolute and the thermodynamic mixing functions of mixed solvents // J. Chem. Soc. Faraday T. 1983. 79.1061-1071.52.Marcus Y.
Thermodynamics of solvation of ions Part 5. Gibbs free energy of hydration at 298.15K // J. Chem. Soc. Farad. Trans. 1991. 87 (18). 2995-2999.53.Померанцев А.Л., Родионова О.Е. Хемометрика в аналитической химии. Москва. 2009.54.Umebayashi Y., Matsumoto K., Watanabe M., Ishiguro S. Individual solvation numbers aroundthe nickel(II) ion in an N,N-dimethylformamide and N,N-dimethylacetamide mixture determined byRaman spectrophotometry // Anal.
Sc. 2001. 2001. 17. 323-326.55.Kristiansson, O., Lindgren, J., De Villepin, J. A quantitative infrared spectroscopic method for thestudy of the hydration of ions in aqueous solutions // J. Phys. Chem. 1988. 92. 2680-2685.56.Kristiansson, O., Lindgren, J. Infrared spectroscopic studies of concentrated aqueous electrolytesolutions // J. Phys. Chem. 1991. 95. 1488-1493.57.Bergstrom, P.-A., Kristiansson, O., Lindgren, J. An IR study of the hydration of perchlorate,nitrate, iodide, bromide, chloride and sulfate anions in aqueous solution // J. Phys. Chem. 1991. 95.8575-8580.58.Kamienska-Piotrowicz, E., Stangret, J.
Spectroscopy studies of preferential hydration of Co(II),Ni(II), Cu(II) and Zn(II) ions in acetonitrile-water mixtures // J. Mol. Struct. 1995. 344. 69-76.59.Kimura, T., Kato, Y. Luminescence study on the inner-sphere hydration number oflanthanide(III) ions in concentrated aqueous salt solutions in fluid and frozen states // J. of Alloys andComp.
1998. 278. 92–97.60.Kimura, T., Kato, Y., Nagaishi, R., Yoshida, Z. Luminescence study on preferential solvation ofEuropium(III) in water/non-aqueous solvent mixtures // J. of Alloys Comp. 2001. 323–324. 164–168.61.Tanaka, F., Kawasaki, Y., Yamashita, S.
Preferential solvation of the europium(III) ion in water-non-aqueous solvent mixtures // J. Chem. Soc., Faraday Trans. I. 1998. 84 (4). 1083-1090.62.Supkowski R. M., Horrocks W. W. On the determination of the number of water molecules, q,coordinated to europium(III) ions in solution from luminescence decay lifetimes // Inorg.
Chim. Acta.2002. 340. 44-48.63.Kimura T., Kato Y. Luminescence study on hydration states of lanthanide(III)–polyaminopolycarboxylate complexes in aqueous solution // J. Alloys Comp. 1998. 275-277. 806-810.64.Choppin G.R., Peterman D.R. Applications of lanthanide luminescence spectroscopy to solutionstudies of coordination chemistry // Coord.
Chem. Rev. 1998. 174. 283–299.65.Burgess J.H. Metal Ions in Solution. Wiley & Sons. New York. 1979.66.Conway B.E. Ionic hydration in Chemistry and Biophysics. Elsevier, Amsterdam. 1981.67.Marcus Y. Ion Solvation. Wiley, Chichester, UK. 1988.127Arrenius S. Ueber die dissociation der im wasser gelösten stoffe // Z. Phys. Chem. 1887. 1.
631-68.648.69.Stewart G.W. X-Ray Diffraction in water: The nature of molecular association // Phys. Rev.1931. 37. 9-16.70.Mahler J., Persson I. A Study of the hydration of the alkali metal ions in aqueous solution // InorgChem. 2012. 51 (1). 425-438.71.Ohtaki H., Maeda M. An X-Ray diffraction study of the structure of hydrated copper(II) ion in acopper(II) perchlorate solution // Bull.
Chem. Soc. Japan. 1974. 47 (9). 2197-2199.72.Ozutsumi K., Ohtaki H. 26th International Conference on Solution Chemistry, Fukuoka, Japan,1999.73.Basolo F., Pearson R.G. Mechanisms of Inorganic Reactions. Wiley, NY. 1958.74.Franks F. The properties of aqueous solutions at subzero temperatures // Water-A ComprehensiveTreatise. 1982. 7. 215-338.75.Angel C.A. Supercooled water // Ann.Rev. Phys. Chem. 1983, 34, 593-630.76.Burgess J.H. Metal ions in solution. Ellis Horwood, NY. 1978.77.Conway B.E.
Ionic hydration in Chemistry and Biophysics. Elsevier, Amsterdam. 1981.78.Stewart G.W. The Cybotactic (Molecular Group) condition in liquids; the nature of theassociation of octyl alcohol molecules // Phys. Rev. 1930. 35 (2). 726-731.79.Marcus Y. Linear solvation energy relationships. A scale describing the “softness” of solvents //J. Phys. Chem. 1987. 91 (16).
4422-4428.80.Sillen L.G., Martell A.E., Bjerrum J. Stability constants of metal-ion complexes. London:Chemical Society. 1964. 754 p.81.Suzuki H., Ishiguro S.-I. Formation of chloro complexes of manganese(II), cobalt(II), nickel(II)and zinc(II) in dimethyl sulphoxide // J. Chem. Soc. Faraday Trans. 1990. 86 (12). 2179-2185.82.Ishiguro S.-I. Steric effect on solvation and complexation of metal ions in solution // Pure Appl.Chem. 1994. 66 (3). 393-397.83.Suzuki H., Ishiguro S.-I. Thermodynamics and structures of nickel(II) chloro complexes in N,N-dimethylacetamid // Inorg.
Chem. 1992. 31 (20). 4178-4183.84.Pilarczyk M., Klinszporn L. Spectrophotometric and conductometric study of cobalt(II)bromide–dimethyl sulfoxide solutions // J. Chem. Soc. Dalton Trans. 1988. 2. 369-372.85.Pilarczyk M., Klinszporn L. Ionization equilibria in solutions of cobalt(II) bromide in N,N-dimethylformamide // Electrochim. Acta. 1986. 31 (2). 185-192.86.87.Результаты научной группы Мерещенко А.С. (Кафедра лазерной химии СПбГУ)Amuli, C., Meullemeestre, J., Schwing-Weill, M.-J., Vierling, F. UV-visible and infraredinvestigation of tetrahydrofuran-copper(II) chloride // Inorg.
Chem. 1983. 22. 3567–3570.12888.Elleb M., Meullemeestre J., Schwing-Weil M.-J., Vierling F. Stability, electronic spectra, andstructure of the copper(II) chloride complexes in N,N-dimethylformamide // Inorg. Chem. 1980. 19.2699-2704.89.Ishiguro S.-I., Kato K., Nakasone S., Takahashi R., Ozutsumi K. Steric solvent effect onformation thermodynamics and structure of halogeno complexes of lanthanide(III) ions in N,Ndimethylacetamide // J.