Диссертация (1150046), страница 18
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Sipos G., Drinkel E. E., Dorta R. The emergence of sulfoxides as efficient ligandsin transition metal catalysis // Chem. Soc. Rev., 2015, 44, 3834–3860; DOI:10.1039/C4CS00524D2. Surendra Babu M. S., Krishna P. G., Reddy K. H., Philip G. H. Synthesis,characterization, electrochemical studies, DNA binding, and cleavage activity ofmixed copper(II) oxime DMSO complexes // Journal Main Group Chemistry, 2009,8, 2, 101–114; DOI: 10.1080/102412209029776203. Bobicz D., Kristiansson O., Persson I.
Reactivity of five- and six-coordinatedsolvates. A complex formation and crystallographic study of the nickel(II) bromideand iodide systems in dimethyl sulfoxide and N,N-dimethylpropyleneurea // DaltonTrans., 2002, 4201–4205; DOI: 10.1039/b204128f4. Ravindran K., Drumheller J.E. AC magnetic susceptibility of CuC1 2 – DMSO: aquasi 1D ferromagnet // Journal of Magnetism and Magnetic Materials, 1992, 104,107, 833-834; DOI: 10.1016/0304-8853(92)90382-X5. De Oliveira O. A., Chagas P., Airoldi C.
Synthesis, Characterization, andThermochemistry of Adducts of Zinc, Cadmium, and Mercury Halides with N,NDimethylformamide // Inorg. Chem. 1983, 22, 136-140; DOI: 10.1021/ic00143a0306. Nieuwenhuyzen M., Wen H., Wilkins C. J. // Cadmium Iodide Complexes withDimethylsulphoxide, and their Crystal Structures // Z.
anorg. allg. Chem, 1992, 615,143–148; DOI: 10.1002/zaac.199261509297. Skripkin M. Yu., Zamyatin I. V., Chernykh L. V. Solubility in the Ternary SystemWater–Cadmium Bromide–Copper(II) Bromide // Russian Journal of AppliedChemistry, 2001, 74, 7, 1082–1084; DOI: 10.1023/A:10130901282868. Gorbunov A. O., Spektor K. K., Skripkin M. Yu., Tsyrulnikov N. A. Solution–Solid Phase Equilibrium in the Systems Copper(II) Halide–Aprotic OrganicSolvent–Water // Russian Journal of General Chemistry, 2012, 82, 6, 1053–1057;DOI: 10.1134/S10703632120600239.
Stepakova L. V., Skripkin M. Yu., Korneeva V. V., Grigoriev Ya. M., Burkov K.A. Organic Solvent Effect on the Solution–Solid Phase Equilibria in the Systems118CuCl2–L–H2O (L = DMSO, DMF, Acetonitrile) at 25°С // Russian Journal ofGeneral Chemistry, 2009, 79, 6, 1053–1056; DOI: 10.1134/S107036320906001210. Pinhoa S. P., Macedob E. A. Experimental measurement and modelling of KBrsolubility in water, methanol, ethanol, and its binary mixed solvents at differenttemperatures//J.Chem.Thermodynamics2002,34,337–360;DOI:10.1006/jcht.2001.085611. Li M., Constantinescu D., Wang L., Mohs A., Gmehling J.
Solubilities of NaCl,KCl, LiCl, and LiBr in Methanol, Ethanol, Acetone, and Mixed Solvents andCorrelation Using the LIQUAC Model // Ind. Eng. Chem. Res., 2010, 49, 4981–4988; DOI: 10.1021/ie100027c12. Li J.-T., Wang J.-K., Wang Y.-L. Solubility of KCl and MgCl2 in BinarySolvents Formed by Acetone and Water in the Temperature Range between (293.15and 323.15) K // J. Chem. Eng. Data, 2007, 52, 1069-1071; DOI: 10.1021/je700017b13. Krienke H., Ahn-Ercan G., Barthel J. Alkali metal halide solutions in 1,4dioxane–water mixtures.
A Monte Carlo simulation study // Journal of MolecularLiquids, 2004, 109, 115–124; DOI:10.1016/j.molliq.2003.08.01914. Hildebrandt W. H., Cocks F. H. Low temperature crystallization of glasses in theH2O-NaCl-dimethyl sulphoxide ternary system // Journal of Material Science, 1974,9, 9, 1325-1330; DOI: 10.1007/BF0055185115.
Chiavone-Filho O., Rasmussen P. Solubilities of Salts in Mixed Solvents // J.Chem. Eng. Data 1993, 38, 367-369; DOI: 10.1021/je00011a00916. Eysseltov´a J., Malkova Z. Solubility in the Systems MCl (M = Na, K)–1,4-Dioxane–Water at 25 ◦C // J. Solution Chem., 2006, 35, 1329–1334; DOI10.1007/s10953-006-9061-x17. B. Mock et al. Thermodynamic representation of phase equilibria of mixedsolvent electrolyte systems // AIChE journal, 1986, 32, 10, 1655–1664; DOI:10.1002/aic.69032100918.
Thomsen K., Iliuta M. C., Rasmussen P. Extended UNIQUAC model forcorrelation and prediction of vapor–liquid–liquid–solid equilibria in aqueous saltsystems containing non-electrolytes. Part B. Alcohol (ethanol, propanols, butanols)–119water–salt systems // Chemical Engineering Science, 2004, 59, 17, 3631-3647; DOI:10.1016/j.ces.2004.05.02419. Chen C.-C., Mathias P. M. Applied thermodynamics for process modeling //AIChE journal, 2002, 48, 2, 194-200; DOI: 10.1002/aic.69048020220.
Bogachev N.A., Gorbunov A.O., Tikhomirova A.A., Pushikhina O.S., SkripkinM.Yu., Nikolskii A.B. Solubility of d-elements salts in organic and aqueous-organicsolvents: I. Copper, cobalt, and cadmium sulfates // Russian Journal of GeneralChemistry, 2015, 85, 11, 2509–2512; DOI: 10.1134/S107036321511002X21. Gorbunov A.O., Tsyrul’nikov N.A., Tikhomirova A.A., Bogachev N.A.,Skripkin M.Yu., Nikolskii A.B., Pestova O.N. Solubility of d-element salts inorganic and aqueous-organic solvents: II. Effect of halocomplex formation onsolubility of cobalt bromide and chloride and nickel chloride // Russian Journal ofGeneralChemistry,2016,Vol.86,No.4,pp.771–777;DOI:10.1134/S107036321604002222.
Bogachev N.A., Gorbunov A.O., Nikolskii A.B., Skripkin M.Yu. Solubility ofd-elements salts in organic and aqueous-organic solvents: III. Influence ofintermolecular association on solubility of cadmium bromide and iodide // RussianJournal of General Chemistry, 2016, Vol. 86, No. 7, pp. 1539–1544; DOI:10.1134/S107036321607001X23. Bogachev N.A., Tsyrulnikov N.A., Gorbunov A.O., Nikolskii A.B., SkripkinM.Yu., Burkov K.A. Solubility of d-elements salts in organic and aqueous-organicsolvents: IV. Solubility of cadmium chloride // Russian Journal of GeneralChemistry,2016,Vol.86,No.11,pp.2405–2409;DOI:10.1134/S107036321611001324.
Bogachev N. A., Tsyrulnikov N. A., Starova G. L., Skripkin M. Yu., NikolskiiA. B. Solubility of salts of d-elements in organic and water-organic solvents: V.Inner-sphere chalcogen S–S contacts in the [Ni(DMSO)4(H2O)2]Cl2 solvate //Russian Journal of General Chemistry, 2017, Vol. 87, No. 11, pp. 2748–2749; DOI:10.1134/S107036321711037812025. Bogachev N. A., Starova G. L., Razzhivin A. V., Skripkin M.
Yu., Nikolskii A.B. Solubility of d-Element Salts in Organic and Aqueous–Organic Solvents: VI.Structure and Thermal Stability of Cadmium Iodide and Bromide Solvates withDimethylacetamide and Dimethylformamide // Russian Journal of GeneralChemistry, 2018, Vol. 88, No. 1, pp. 1–6; DOI: 10.1134/S107036321801001226. Богачев Н.А, Любичев Д.А., Никольский А.Б., Скрипкин М.Ю.Растворимостьхлоридамеди(II)всмешанныхорганическихкислороддонорных растворителях // Журнал общей химии, 2018, Т. 88.27. Д. Эйзенберг, В.
Кауцман. Структура и свойства воды. Гидрометеоиздат,Ленинград, 197528. Ahn-Ercan G., Krienke H., Schmeer G. Structural and dielectric properties of1,4-dioxane – water mixtures // Journal of Molecular Liquids, 2006, 129, 75–79;DOI:10.1016/j.molliq.2006.08.00429. Концентрированные и насыщенные растворы, под ред. Кутепова А.М.Издательство «Наука», Москва, 2002.30.
Sengwa R.J., Sankhla S., Khatri V. Dielectric characterization and molecularinteraction behaviour in binary mixtures of amides with dimethylsulphoxide and 1,4dioxane//JournalofMolecularLiquids,2010,151,17–22;DOI:10.1016/j.molliq.2009.10.01131. Gutmann V. Solvent effects on the reactivities of organometallic compounds //Coordination Chemistry Reviews, 1976, 18, 225-255; DOI: 10.1016/S00108545(00)82045-732. Mayer U., Gutmann V., Gerger W. The Acceptor Number: A QuantitativeEmpirical Parameter for the Electrophilic Properties of Solvents // Monatshefte furChemie, 1975, 106, 1235-1257; DOI: 10.1007/BF0091359933.
Пирсон Р. Дж. Жесткие и мягкие кислоты и основания // Успехи химии,1971, 15, 7, стр. 1259.34. Marcus Y. Linear solvation energy relationships: a scale describing the"softness" of solvents // J. Phys. Chem., 1987, 91, 16, pp 4422–4428; DOI:10.1021/j100300a04412135. Chen T., Hefter G., Marcus Y. Relationships Among Solvent Softness Scales //JournalofSolutionChemistry,2000,29,3,201-216;DOI:10.1023/A:100511461576736. Кукушкин Ю.
Н. Диметилсульфоксид – важнейший апротонныйрастворитель // Соросовский образовательный журнал, 1997, 9, 54-5937. Risberg E. D., Mink J., Abbasi A., Skripkin M. Yu., Hajba L., Lindqvist-Reis P.,Bencze E., Sandstroem M. Ambidentate coordination in hydrogen bonded dimethylsulfoxide, (CH3)2SO…H3O+, and in dichlorobis(dimethyl sulfoxide) palladium(II)and platinum(II) solid solvates, by vibrational and sulfur K-edge X-ray absorptionspectroscopy // Dalton Trans., 2009, 0, 1328–1338; DOI: 10.1039/b814252a38. Abbasi A., Skripkin M.
Yu., Eriksson L., Torapava N. Ambidentate coordinationof dimethyl sulfoxide in rhodium(III) complexes // Dalton Trans., 2011, 40, 1111;DOI: 10.1039/c0dt01026j39. Зайчиков А.М., Крестов Г.А. Термодинамические свойства системы вода –диметилформамид // Журнал физической химии, 69, №3, 1995, с. 389 – 394.40. Зайчиков А.М., Бушуев Ю.Г. Термодинамические свойства системы вода– диметилацетамид // Журнал физической химии, 69, №11, 1995, с. 1942 –1946.41. Suzuki T., Fujisawa M., Takagi S., Kimura T.
Excess enthalpies of water+1,4dioxane at 278.15, 298.15, 318.15 and 338.15 K // Journal of Thermal Analysis andCalorimetry, 2006, 85, 3, 545–550; DOI: 10.1007/s10973-006-7658-342. Checoni R. F., Volpe P. L. O. Measurements of the Molar Heat Capacities andExcess Molar Heat Capacities for Water + Organic Solvents Mixtures at 288.15 Kto 303.15 K and Atmospheric Pressure // J. Solution Chem., 2010, 39, 259–276;DOI 10.1007/s10953-010-9500-643. Roy S., Banerjee S., Biyani N., Jana B., Bagchi B. Theoretical andComputational Analysis of Static and Dynamic Anomalies in Water-DMSO BinaryMixture at Low DMSO Concentrations // J. Phys. Chem.