Диссертация (1150011), страница 18
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А. Трунов [и др.] // Кристаллография. –2007. – Т.52, Вып.3. – С.536-544.21.Haubold, H.-G. Nano-structure of nafion: a saxs study / H.-G. Haubold [etal.] // Electrochimica Acta. – 2001. – V.46. – P.1559-1563.22.Ярославцев, А. Б. Мембраны и мембранные технологии / А. Б.Ярославцев – М.: Научный мир, 2013. – 612 с.23.Fimrite, J. Transport Phenomena in Polymer Electrolyte Membranes I.Modeling Framework / J. Fimrite [et al.] // Journal of The ElectrochemicalSociety. – 2005. – V.152. – P.A1804-A1814.24.Gavach, C.
AC Impedance investigation of the kinetics of ion transport inNafion perfluorosulfonic membranes / C. Gavach [et al.] // Journal ofMembrane Science. – 1989. – V.45. – P.37-53.25.Бокштейн, Б. С. Диффузия атомов и ионов в твердых телах / Б. С.Бокштейн, А. Б. Ярославцев – М.: МИСИС, 2005. – 362 с.26.Котов, В.
Ю. Протонная подвижность в неорганических гидратахкислот и кислых солей / В. Ю. Котов [и др.] // Известия АН. Серияхимическая. – 2002. – Т.4. – С.515-528.27.Fang, J. Electrochemical Polymer Electrolyte Membranes / J. Fang, J.Qiao, D. Wilkinson, J. Zhang – CRC Press, 2015.
– 651 p.28.Choi, P. Thermodynamics and Proton Transport in Nafion II. ProtonDiffusion Mechanisms and Conductivity / P. Choi [et al.] // Journal of TheElectrochemical Society. – 2005. – V.152. – P.E123-E130.29.Ярославцев,А.Б.Наноструктурированныематериалыдлянизкотемпературных топливных элементов / А. Б. Ярославцев [и др.]// Успехи химии. – 2012. – Т.81, Вып.3. – С.191-220.30.Feng, C. Humidity sensing properties of Nafion and sol-gel derivedSiO2/Nafion composite thin films / C. Feng [et al.] // Sensors andActuators.
– 1997. – V.40. – P.217-222.14031.O’Brien, T. F. Handbook of Chlor-Alkali Technology / T. F. O’Brien, T.V. Bommaraju, F. Hine – Springer Science & Business Media, 2007. –1580 p.32.Liang, C. C. Conduction characteristics of the lithium iodide-aluminumoxide solid electrolytes / C. C. Liang // Journal of The ElectrochemicalSociety. – 1973. – V.120. – P.1289-1292.33.Ярославцев, А. Б. Наноматериалы: свойства и перспективныеприложения / А.
Б. Ярославцев – М.: Научный мир, 2015. – 456 с.34.Revankar, S. T. Fuel Cells: Principles, Design, and Analysis / S. T.Revankar, P. Majumdar – CRC Press, 2014. – 748 p.35.Herring, A. M. Inorganic-Polymer Composite Membranes for ProtonExchange Membrane Fuel Cells / A. M. Herring // Journal ofMacromolecular Science, Part C.
– 2006. – V.46. – P.245-296.36.Alberty, G. Composite membranes for medium temperature PEM fuel cells/ G. Alberty [et al.] // Annual review of Materials Research. – 2003. –V.33. – P.129-154.37.Gebel,G.StructureandrelatedpropertiesofSolution-CastPerfluorosulfonated Ionomer Films / G. Gebel [et al.] // Macromolecules.– 1987.
– V.20. – P.1425-1428.38.Иванчев, С. С. Полимерные мембраны для топливных элементов:получение, структура, модифицирование, свойства / С. С. Иванчев [идр.] // Успехи химии. – 2010. – Т.79, Вып.2. – С.117-134.39.Уваров, Н. Ф. Композиционные твердые электролиты / Н. Ф. Уваров –Новосибирск: Изд-во СО РАН, 2008. – 258 с.40.Antonucci, P. L. Investigation of a direct methanol fuel cell based on acomposite Nafion-silica electrolyte for high temperature operation / P.
L.Antonucci [et al.] // Solid State Ionics. – 1999. – V.125. – P.431-437.41.Jin, Y. Novel Nafion composite membranes with mesoporous silicananospheres as inorganic fillers / Y. Jin [et al.] // Journal of PowerSources. – 2008. – V.185. – P.664-669.14142.Jiang,R.Compositesilica/Nafionmembranespreparedbytetraethylorthosilicate sol-gel reaction and solution casting for directmethanol fuel cells / R. Jiang [et al.] // Journal of Membrane Science.
–2006. – V.272. – P.116-124.43.Alvarez, A. Silica-based composite membranes for methanol fuel cellsoperating at high temperature / A. Alvarez [et al.] // Journal of NewMaterials for Electrochemical Systems. – 2011. – V.14. – P.87-91.44.Sahu, A. K. Meso-structured silica-Nafion hybrid membranes for directmethanol fuel cells / A. K. Sahu [et al.] // Journal of The ElectrochemicalSociety. – 2012. – V.159. – P.F702-F710.45.Dimitrova, P. Modified Nafion-based membranes for use in directmethanol fuel cells / P.
Dimitrova [et al.] // Solid State Ionics. – 2002. –V.150. – P.115-122.46.Devrim,Y.Preparation andtestingof Nafion/titanium dioxidenanocomposite membrane electrode assembly by ultrasonic coatingtechnique / Y. Devrim // Journal of Applied Polymer Science. – 2014. –V.131. – P.40541-40552.47.Baglio, V. Composite Mesoporous Titania Nafion-Based Membranes forDirect Methanol Fuel cell Operation at High Temperature / V. Baglio [etal.] // Journal of The Electrochemical Society. – 2005. – V.152. – P.A1373-A1377.48.Sacca, A. Composites Nafion-titania membranes for Polymer ElectrolyteFuel Cell (PEFC) applications at low relative humidity levels: Chemicalphysical properties and electrochemical performance / A.
Sacca [et al.] //Polymer Testing. – 2016. – V.56. – P.10-18.49.Wu, R.-J. Composite of TiO2 nanowires and Nafion as humidity sensormaterial / R.-J. Wu [et al.] // Sensors and Actuators B. – 2006. – V.115. –P.198-204.14250.Sacca, A. Nafion-TiO2 hybrid membranes for medium temperaturepolymer electrolyte fuel cells (PEFCs) / A. Sacca [et al.] // Journal ofPower Sources. – 2005. – V.152. – P.16-21.51.Liu, Z. Nano-TiO2-coated polymer electrolyte membranes for directmethanol fuel cells / Z.
Liu [et al.] // Journal of Power Sources. – 2006. –V.157. – P.207-211.52.Wu, Z. Nafion and nano-size TiO2-SO4 2- solid superacid compositemembrane for direct methanol fuel cell / Z. Wu [et al.] // Journal ofMembrane Science. – 2008. – V.313. – P.336-343.53.D’Epifanio, A. Composite Nafion/sulfonated zirconia membranes: effectof the filler surface properties on proton transport characteristics / A.D’Epifanio [et al.] // Chemistry of Materials. – 2010.
– V.22. – P.813-821.54.Siracusano, S. Investigation of Composite Nafion/Sulfated ZirconiaMembrane for Solid Polymer Electrolyte Electrolyzer Applications / S.Siracusano [et al.] // International Journal of Electrochemical Science. –2012. – V.7. – P.1532-1542.55.Mokhtaruddin, R. Preparation and Characterization of Nafion-ZirconiaComposite Membrane for PEMFC / R. Mokhtaruddin [et al.] // AdvancedMaterials Research.
– 2011. – V.239. – P.263-268.56.Suzhen, R. Sulfated zirconia-Nafion composite membranes for highertemperature direct methanol fuel cells / R. Suzhen [et al.] // Journal ofPower Sources. – 2006. – V.157. – P.724-726.57.Viswanathan, B. Is Nafion the only Choise? / B. Viswanathan // Bulletin ofthe Catalysis Society of India. – 2007. – V.6.
– P.50-66.58.Arbizzani, C. Methanol permeability and performance of Nafionzirconium phosphate composite membranes in active and passive directmethanol fuel cells / C. Arbizzani [et al.] // Journal of Power Sources. –2010. – V.195. – P.7751-7756.59.Casciola, M. Preparation, Proton Conductivity and Mechanical Propertiesof Nafion 117 - Zirconium Phosphate Sulphophenylphosphonate143Composite Membranes / M. Casciola [et al.] // Fuel Cells. – 2009. – V.9.
–P.381-386.60.Staiti, P. Hybrid Nafion-silica membranes doped with heteropolyacids forapplication in direct methanol fuel cells / P. Staiti [et al.] // Solid stateionics. – 2001. – V.145. – P.101-107.61.Tazi, B. Effect of Various Heteropolyacids (HPAs) on the Characteristicsof Nafion-HPAS Membranes and their H2/O2 Polymer Electrolyte FuelCell Parameters / B. Tazi [et al.] // Journal of New Materials forElectrochemical Systems. – 2001.
– V.4. – P.187-196.62.Shao, Z.-G. Preparation and characterization of hybrid Nafion-silicamembrane doped with phosphotungstic acid for high temperature operationof proton exchange membrane fuel cells / Z.-G. Shao [et al.] // Journal ofMembrane Science. – 2004. – V.229. – P.43-51.63.Mahreni, A. Nafion/silicon oxide/phosphotungstic acid nanocompositemembrane with enhanced proton conductivity / A. Mahreni [et al.] //Journal of Membrane Science. – 2009. – V.327. – P.32-40.64.Ramani, V. Metal dioxide supported heteropolyacid/Nafion compositemembranes for elevated temperature/low relative humidity PEFCoperation / V. Ramani [et al.] // Journal of Membrane Science.
– 2006. –V.279. – P.506-512.65.Xu,W.Lowmethanol permeablecompositeNafion/silica/PWAmembranes for low temperature direct methanol fuel cells / W. Xu [et al.]// Electrochimica Acta. – 2005. – V.50. – P.3280-3285.66.Amirinejad, M. Cesium hydrogen salt of heteropolyacids/Nafionnanocomposite membranes for proton exchange membrane fuel cells / M.Amirinejad [et al.] // Fuel and Energy Abstracts. – 2011.