Влияние строения привитого слоя и структурных параметров носителей на адсорбционные свойства полифторалкилкремнеземов (1105553), страница 29
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175 p.124.M.D. Popova, Á. Szegedi, I.N. Kolev. Carboxylic modified spherical mesoporous silicas аsdrug delivery carriers. // Int. J. Pharm. 2012. V. 436. P. 778-785.125.Nguyen-Phan, T-D Lee, C.Y. Chung. Adsorption of benzene onto mesoporous silicatesmodified by titanium // Res. Chem. Intermed. 2008. V. 34. №. 8-90. P. 743-753.126.B. Wu, Z. Tong, X. Yuan. Synthesis, characterization and catalytic application of mesoporousmolecular sieves SBA-15 functionalized with phosphoric acid. // J. Porous Mater.
2012. V. 19.P. 641-647.127.D. Zhang, J.H. Li. Ordered SBA-15 mesoporous silica with high amino-functionalization foradsorption of heavy metal ions. // Chinese Science Bulletin. 2013. V. 58. P. 879-883.128.M. Mureseanu, A. Reiss, I. Stefanescu, E. David, V. Parvulescu, G. Renard, V. HuleaModified SBA-15 mesoporous silica for heavy metal ions remediation.
// Chemosphere. 2008.V. 73. P. 1499-1504.129.Z. Luan, J. A Fournier, J. B. Wooten, D. E. Miser. Preparation and characterization of(3-aminopropyl) triethoxysilane-modified mesoporous SBA-15 silica molecular sieves. //Microporous Mesoporous Mater. 2005.
V. 83. P. 150-158.145130.H. Huang, C. Yang, H. Zhang, M. Liu. Preparation and characterization of octyl andoctadecyl-modified mesoporous SBA-15 silicamolecular sieves for adsorption of dimethylphthalate and diethyl phthalate. // Micropor. Mesopor. Materials. 2008. V. 111.
P. 254-259.131.Т.М. Рощина, Н.К. Шония, Н.А. Зубарева, А.Ю. Фадеев. Адсорбционные свойства исмачиваемость лиофобных кремнийорганических монослоев на кремнеземе. // Журн.Физ. Химии. 2003. Т. 77. № 9. С. 1650 – 1659.132.I.J. Horr, J. Ralston, R. Smart. The use of contact angle measurements to quantify theadsorption density and thickness of organic molecules on hydrophilic surfaces. // Colloids SurfA: Physicochem Eng.
Asp. 1995. V. 97. P. 97-183.133.G. Korosi, E. Kovats. Characterization of low energy surfaces by a standard surface method. //Colloid Surf. 1981. P. 315-355.134.А.Ю. Фадеев, О.А. Соболева , Б.Д. Сумм. Смачиваемость кремнийорганических икремнийфторорганических монослоев, ковалентно привитых на кварц. // Коллойдн.Журн. 1997. V. 59. С. 273-277.135.J. Duchet, B.
Chabert, J. P. Chapel, J.F. Jerard, J.M. Chovelon. Influence of the DepositionProcess on the Structure of Grafted Alkylsilane Layers. // Langmuir. 1997. V. 13.P. 2271-2278.136.J-M. Park, J. D. Andrade. Polymer Surface Dynamics. // In: Andrade J. D. Еd., Plenum Press:New York. 1988. P. 67-68.137.J. Drelich, J.D.
Miller, R.J. Good. The Effect of Drop (Bubble) Size on Advancing andReceding Contact Angles for Heterogeneous and Rough Solid Surfaces as Observed withSessile-Drop and Captive-Bubble Techniques. // J. Colloid Interface Sci. 1996. V. 179.P. 37-50.138.J. Lakowski, J.A. Kitchener. The hydrophilic-hydrophobic transition on silica.
// ColloidInterface Sci. 1969. V. 29. P. 670-679.139.M. Trau, B.S. Murray, K. Grant, F. Grieser. An ellipsometric study of thin films on silica platesformed by alkylchlorosilylation reagents. // Colloid Interface Sci. 1992. V. 148. P. 182-189.140.A.Y. Fadeev, T.J McCarthy. Trialkylsilane monolayers covalently attached to silicon surfaces:wettability studied indicating that molecular topography contributes to contact anglehysteresis. // Langmuir.
1999. V. 15. P. 3759-3766.141.URL: http://www.fisita.com/education/congress/sc06papers/F2006sc11.pdf142.H. Sawada, Y. Ikematsu, T. Kawase. Synthesis and Surface Properties of NovelFluoroalkylated Flip-Flop-Type Silane Coupling Agents. // Langmuir. 1996. V. 12.P. 3529-3530.146143.А.М. Икаев. Химическое модифицирование поверхности оксидов железа, меди, олова,магния и цинка кремний- и фосфорорганическими соединениями. // Дис.
канд. хим.наук. М.: МГУ. 2008. 142 с.144.A. Fadeev, R. Helmy, S. Marcinko. Self-Asembled Monolayers of Organosilicon HydridesSupported on Titanium, Zirconium, and Hafnium Dioxides. // Langmuir. 2002. V. 18.P. 7521-7529.145.J. Nawrocki, M.P. Rigney, A. McCormick, P.W. Carr. Chemistry of zirconia and its use inchromatography. // J. Chromatogr. 1993. V. 657. P. 229-282.146.M. Pursch, D.L. Vanderhart, L.C. Sander, X.
Gu, T. Nguyen. C30 Self-AssembledMonolayers on Silica, Titania, and Zirconia: HPLC Performance, Atomic Force Microscopy,Ellipsometry, and NMR Studies of Molecular Dynamics and Uniformity of Coverage. // J.Am. Chem. Soc. 2000. V. 122. P. 6997-7011.147.J. Nawrocki, C. Dunlap, A. McCormick, P.W. Carr. Part I. Chromatography Using UltraStable Metal Oxide-Based Stationary Phases for HPLC. // J. Chromatogr. A. 2004. V. 1028. P.1-30.148.J.J. Pesek, M.T.
Matyska, J. Ramakrishnan. Synthesis and Characterization of Titania BasedStationary Phases Using the Silanization / Hydrosilation Method. // Chromatographia. 1997.V. 44. P. 538-544.149.K.V.P.M. Shafi, A. Ulman, X. Yan. Sonochemical Preparation of Silane-Coated TitaniaParticles. // Langmuir. 2001. V. 17. P. 1726-1730.150.K. Kailasam.
Synthesis and Characterization of Mesoporous Silica and Metal Oxide BasedStationary Phase. // Dr. rer. Nat. Stuttgart. 2008. 175 p.151.Е.Д. Щукин, А.В. Перцов, Е.А Амелина. Коллоидная химия. М.: Высш. шк. 1992. 414 с.152.D. Quere. Wetting and roughness. // Annu. Rev. Mater.
Res. 2008. V. 38. P. 71–99.153.R.N. Wenzel. Resistance of solid surfaces to wetting by water. // Ind. Eng. Chem. 1936. V. 8.P. 988–994.154.A.B.D. Cassie, S. Baxter. Large contact angles of plant and animal surfaces. // Nature. 1945.V. 155. P. 21–22.155.S. Baxter, A.B.D. Cassie. The water repellency of fabrics and a new water repellency test. // J.Text. Inst. 1945. V. 36. P. 67-90.156.W. Joseph, A. Fadeev.
Displacement Reactions of Covalently Attached OrganosiliconMonolayers on Si. // Langmuir. 2006. V. 22. P. 8271-8272.157.Ю.И. Тарасевич. Поверхностная энергия гидрофильных и гидрофобных адсорбентов. //Коллоидн. Журн. 2007. Т. 69. №2. С. 235-243.147158.Липатов Ю.С. Коллоидная химия полимеров. Киев: Наукова думка. 1984. 342 c.159.S.
Siboni, C. Della Volpe, D. Maniglio, M. Brugnara. The solid surface free energycalculation: II. The limits of the Zisman and of the “equation-of-state” approaches. // J.Colloid Interface Sci. 2004. V. 271. № 2. P. 454-472.160.Б.Д. Сумм, Ю.В. Горюнов. Физико-химические основы смачивания и растекания. М.:Химия. 1976.
232 c.161.A.Y. Fadeev. Hydrophobic Monolayer Surfaces: Synthesis and wettability. // Encyclopedia ofSurface and Colloid Science. Ed. by P. Somasundaran. N.Y.: Taylor & Francis. 2006. P. 2854.162.B. Arkles, Y. Pan, Y.Mi Kim. The Role of Polarity in the Structure of Silanes Employed inSurface Modification. // Silanes and Other Coupling Agents. 2009.
V. 5. P. 51-64.163.Ю.И. Тарасевич, С.В. Бондаренко, А.И. Жукова. Изучение гидрофобности поверхностикремнезема и стекла, модифицированных полиакилгидридсилоксанами. // Коллоидн.Журн. 2002. Т. 64. № 3. С. 409 – 412.164.Ю.И. Тарасевич, В.Е. Поляков, А.А. Сердан, Г.В. Лисичкин. Микрокалориметрическоеисследование адсорбции воды на исходном и модифицированном полифторалкильнымигруппами кремнеземе. // Коллоидн. Журн.
2005. Т. 67. № 5. C. 702 – 708.165.D. Barriet, T. Lee. Fluorinated self-assembled monolayers: Composition, structure andinterfacial properties. // Curr Opin Colloid In. 2003. V. 8. P. 236 – 242.166.H. Tada, H. Nagayama. Chemical Vapor Surface Modification of Porous Glass withFluoroalkyl-Functionalized Silanes. 2. Resistance to Water. // Langmuir. 1996.
V. 11.P. 136-142.167.A. Cavazzini, L. Pasti, R. Greco, V. Costa. Geometric characterization of straight-chainperfluorohexylpropyl adsorbents for high performance liquid chromatography. // J.Chromatogr. A. 2013 .V. 1286. P.47-54168.A. Cavazzini, N. Marchetti, L. Pasti. A New Method to Investigate the Intrusion of Water intoPorous Hydrophobic Structures under Dynamic Conditions. // Anal. Chem. 2013. 85. P. 19-22.169.С. Грег, К. Синг. Адсорбция, удельная поверхность, пористость. М.: Мир. 1970. 480 c.170.А.П.
Карнаухов. Усовершенствование методов определения удельной поверхности. //Адсорбенты, их получение, свойства и применение. Л.: Наука. 1985. C. 55-60.171.F. Schuth, K.S.W. Sing, J. Weitkamp. Handbook of Porous Solids. // Verlag GmbH: WileyVCH. 2002. P. 2014-2037.172.T. Yamamoto, A. Endo, Y. Inagi, T. Ohmori, M. Nakaiwa. Evaluation of thermoporometry forcharacterization of mesoporous materials. // J. Colloid Interface Sci. 2005. V. 284. P. 614-620.148173.J.A.
Otero, O. Mazarrasa, J. Villasante, V. Silva. Three independent ways to obtaininformation on pore size distributions of nanofiltration membranes. // J. Membrane Sci. 2008.V. 309. P. 17–27.174.J.A. Otero, G. Lena, J.M. Colina, P. Pradanos, F. Tejerina, A. Hernandez. Characterisation ofnanofiltration membranes. // J. Membrane Sci. 2006. V. 279.
P. 410-421.175.D.W. Aksnes, K. Forland. NMR investigations of hexamethyldisilane confined incontrolled pore glasses: Pore size distribution and molecular dynamics studies. // Appl.Magn. Reson. 2003. V. 25. P. 297–311.176.D.W. Aksnes, L. Kimtys. 1H and 2H NMR studies of benzene confined in porous solids:melting point depression and pore size distribution. // Solid State Nucl. Magn. Reson. 2004.V. 25. P. 146–152.177.E.
Reverchon, S. Cardea, E.S. Rappo. Production of loaded PMMA structures using thesupercritical CO2 phase inversion process. // J. Membrane Sci. 2006. V. 273. P. 97–105.178.I. Masselin, L. Durand-Bourlier, J.-P. Laine, P.-Y. Sizaret. Membrane characterization usingmicroscopic image analysis. // J. Membrane Sci. 2001. V.
186. P. 85–96.179.W. Kuhn, E. Peterli, H. Majer Freezing point depression of gels produced by high polymernetwork. // J. Polym. Sci. 1955. V. 16. P. 539–548.180.M. Brun, A. Lallemand, J.F. Quinson, C Eyraud. A new method for the simultaneousdetermination of the size and shape of pores: the thermoporometry. // Thermochim. Acta.1977. V. 21. P. 59–88.181.П.М. Пахомов, М.Н. Маланин, С.Д.