Электрокатализаторы на основе платинированных оксидов олова для низкотемпературных водородных и спиртовых топливных элементов
Диссертация
Перспективным материалом для использования в качестве носителя являются материалы на основе Sn02, обладающие химической и коррозионной устойчивостью. Кроме того, на поверхности диоксида олова хемосорбция воды с формированием адсорбированных кислородсодержащих групп на поверхности протекает при более низких потенциалах, чем на платине, что способствует активации электроокисления СО и спиртов. Для… Читать ещё >
Список литературы
- Юсти Э., Винзелъ ^.Топливные элементы. М.:Мир, 1964, С. 478.
- Багоцкий B.C. Основы электрохимии.- М.: Химия.- 1988.- С. 400.
- Fournier J., Faubert G., Tilquin J.Y., CoteR., Guay D., Dodelet J.P. High-Performance Low Pt Content Catalysts for the Electroreduction of Oxygen in Polymer-Electrolyte Fuel Cells // J. Electrochem. Soc. -1997. -V.144. -P.145.
- Wagner N., Schnurnberger W., Mueller В., Lang M. Electrochemical impedance spectra of solid-oxide fuel cells and polymer membrane fuel cells // Electrochim Acta. -1998. -Vol. 43. -P.3785.
- Wang B. Recent development of non-platinum catalysts for oxygen reduction reaction//J Power Sources. -2005. -Vol.152. -P.l-15.
- XuY, Mavrikakis M. Adsorption and dissociation of 02 on gold surfaces: effect of steps and strain //J Phys Chem B. -2003. -Vol. 107. -P. 9298−307.
- Wakabayashi N, Takeichi M, Uchida H, Watanabe M. Temperature dependence of oxygen reduction activity at Pt-Fe, Pt-Co, and Pt-Ni alloy electrodes //J Phys Chem B. -2005. -Vol. 109. -P. 5836−41.
- Yuichi Т., Kento Т., Mikito U., Toshiaki O. Effect of oxide film on oxygen reduction current for the platinum-cobalt alloy electrodes in PEFC //Corrosion Science. -2009. -Vol. 51, -№ 7. -P. 1560−1564.
- Neyerlin K.C., Srivastava R., Yu C., Strasser P. Electrochemical activity and stability of dealloyed Pt-Cu and Pt-Cu-Co electrocatalysts for the oxygen reduction reaction (ORR) //Journal of Power Sources. -2009. -Vol. 186. -№ 2. -P. 261−267.
- Wang Z.B., Yin G.P., Zhang J., Sun Y.C., ShiP.F. Investigation ofethanol electrooxidation on a Pt-Ru-Ni/C catalyst for a direct ethanol fuel cell //J Power Sources. -2006. -Vol. 160. -P. 37−43.
- Ota K, Nakagawa Y, Takahashi M. Reaction products of anodic oxidation of methanol in sulfuric acid solution //J Electroanal Chem. -1984. -Vol. 179. -P. 179−86.
- Gilman S. The mechanism of electrochemical oxidation of carbon monoxide and methanol on platinum. II. The «reactant-pair» mechanism for electrochemical oxidation of carbon monoxide and methanol // J. Phys. Chem. -1964. V.68. -P.70−80.-57.
- Breiter M. W. Adsorption and oxidation of carbon monoxide on platinized platinum electrodes.//J. Phys. Chem. 1968.-V.72.-P.1305−1313.
- Breiter M. W. // J. Electroanal. Chem. 1979. — V. 101. — P.329.
- S.Lebedeva N.P., Koper M.T.M., Feliu J.M., van Santen R.A. Role of crystalline defects in electrocatalysis: mechanism and kinetics of CO adlayer oxidation on stepped platinum electrodes // J. Phys. Chem. B. 2002. — V.106. — P. 1 293 812 947.
- Cherstiouk O.V., Simonov P.A., Zaikovskii V.I., Savinova E.R. II J. Electroanal. Chem. 2003. — V.554−555. — P.241.
- Wu J., Yuan X.Z., WangH., Blanco M., et al. Durability of РЕМ fuel cells. Presented at: Hydrogen and Fuel Cells 2007 International Conference and Trade Show- 2007 Apr 29-May 3- Vancouver, Canada.
- Ralph T.R., Hards G.A., Keating J.E., et al. Lowcost electrodes for proton exchange membrane fuel cells //J Electrochem Sci.1997. Vol. 144. № 57. P. 3845-
- Neyerlin K.C., Gu W., JorneJ., Gasteiger H.A. Determination of catalyst unique parameters for the oxygen reduction reaction in a PEMFC. // J Electrochem Soc. -2006. -Vol. 153 -№ 63. -P. 1955.
- Soderberg J.N., SirkA.H.C., CampbellS.A., Birss V.I. Oxygen Reduction by Sol-Derived Pt/Co-Based Alloys for РЕМ Fuel Cells // J.Electrochem. Soc. -2005. -Vol.152. -№ 10. -P. 2017-
- Qian W., Wilkinson D. P., ShenJ., WangH., Zhang J. Architecture for portable direct liquid fuel cells.// J Power Sources. -2006. -Vol.154. -№ 13. -P. 202-
- Zhao M., Rice C., Masel R.I., Waszczuk P., Wieckowski A. Kinetic study of electrooxidation of formic acid on spontaneously-deposited Pt/Pd nanoparticles. //J Electrochem Soc. -2004. -Vol. 151. -№ 6. -P. 131.
- Prakash J., Joachin H. Electrocatalytic activity of ruthenium for oxygen reduction in alkaline solution. //Electrochim Acta. -2000. -Vol. 45. -№ 96. -P. 2289.
- Otero R., CallejaF., GarcHa-Su6rez V.M., et al. Tailoring surface electronic states via strain to control adsorption: 0/Cu/Ru (0 0 0 1) // Surf Sci. -2004. -Vol. 550. -№ 72. -P. 65.
- Neyerlin K.C., Gasteiger H.A., Mittelsteadt C.K., JorneJ., Gu W. Effect of relative humidity on oxygen reduction kinetics in a PEMFC // J Electrochem Soc. -2005. -Vol. 152. -№ Ю8. -P. A1073.
- Зв.Хи, Song Y., Kunz H.R., Fenton J.M. Effect of Elevated Temperature and Reduced Relative Humidity on ORR Kinetics for РЕМ Fuel Cells //Electrochem Soc. -2005. -Vol. 152. -№ 36. -P. A1828.
- Ъ1 .Stiehl J.D., Kim T.S., McClure S.M., Mullins C.B. Evidence for molecularly chemisorbed oxygen on Ti02 supported gold nanoclusters and Au (l 11) // J Am Chem Soc. -2004.-Vol. 126. -№ 7. -P. 1606.
- WangZ.B., Yin G.P., Zhang J., Sun Y.C., ShiP.F. Investigation of ethanol electrooxidation on a Pt-Ru-Ni/C catalyst for a direct ethanol fuel cell // J Power Sources. -2006. -Vol. 160. -P. 37−43.
- LegerJ-M, Rousseau S, Coutanceau C, Hahn F, Lamy C. How do bimetallic electrocatalysts work for reactions involved in fuel cells? Example of ethanol oxidation and comparison to methanol. // Electrochim Acta. -2005. -Vol. 50. -P. 25.
- Zhou W.J., Li W.Z., Song S.O., et al. Bi- and tri-metallic Ptbased anode catalysts for direct ethanol fuel cells // J Power Sources. -2004. -Vol. 131. -P. 217−230.
- Frano Barbir. Fuel Cell Technology. London: Springer, 2006. — 298 c.
- Ball S., Hodgkinson A., Hoogers G., Maniguet S., Thompsett D., WongB. II Electrochem Solid-State Lett .-2002. -Vol. 5. -P. A31.
- Is hikaw a Y., Liao M.S., Cabrera C.R. Energetics of H20 dissociation and COads+OHads reaction on a series of Pt-M mixed metal clusters: a relativistic density-functional study // Surf Sci. -2002. -Vol. 513. -P. 98−110.
- Gasteiger H.A., Kocha S.S., Sompalli В., Wagner F. T. Activity benchmarks and requirements for Pt, Pt-alloy, and non-Pt oxygen reduction catalysts for PEMFCs // Appl Catal B: Environmental. -2005. -Vol. 56. -P. 9−35.
- Dupont C., Jugnet Y., LoffredaD. Theoretical evidence of PtSn alloy efficiency for CO oxidation. // J Am Chem Soc. -2006. -Vol. 128. -P. 9129.
- Gutz M., WendtH. Binary and ternary anode catalyst formulations including the elements W, Sn and Mo for PEMFCs operated on methanol or reformate gas // Electrochim Acta. -1998. -Vol. 43. -P. 3637−3644
- Shukla A.K., Ravikumar M.K., AricmA.S., et ah II J Appl Electrochem. -1995. -Vol. 25. -P. 528−532.6 $.Machida К., Enyo M., Adachi G., Shiokawa J. IIJ Electrochem Soc. -1988. -Vol. 135. -P. 1955−1961.
- Ralph TR, Hogarth MP. Catalysis for low temperature fuel cells, part II: the anode challenges // Platinum Metals Rev. -2002. -Vol 46. -No 3. -P. 117−135.
- Urian R.C., Gulla A.F., Mukerjee S. Electrocatalysis of reformate tolerance in proton exchange membranes fuel cells: Part I // J Electroanal Chem. -2003. -Vol. 554−555. -P. 307.
- HJanssen G.J.M. Modelling study of C02 poisoning on PEMFC anodes // J Power Sources. -2004. -Vol. 136. -P. 45−54.
- H.ParkK, Seol К. Nb-ТЮг supported Pt cathode catalyst for polymer electrolyte membrane fuel cells // Electrochemistry communications. -2007. -Vol. 9. -No. 9. P. 2256−2260.
- Garcia B.L., Fuentes R., Weidner J.W. Low-Temperature Synthesis of a PtRuZNbo.1Tio.9O2 Electrocatalyst for Methanol Oxidation // Electrochemical and Solid-State Letters. -2007. -Vol. 10. -No. 7. -P. B108-B110.
- A.Chen A., Daniel J., Russa L., Miller B. Effect of the Iridium Oxide Thin Film on the Electrochemical Activity of Platinum Nanoparticles // Langmuir. -2004. -Vol. 20. -P. 9695−9702.
- Antolini E. Formation, Microstructural Characteristics and Stability of Carbon Supported Platinum Catalysts for Low Temperature Fuel Cells // J. Matt. Science. -2003. -V. 38. -P.2995.
- Roen L.M., Paik C.H., Jarvi T.D. Electrocatalytic Corrosion of Carbon Support in PEMFC Cathodes // Electrochem. Solid-State Lett. -2004. -Vol. 7. -Is. 1. -P. A19-A22.
- Krstajica N.V., Vracara L.M., Radmilovica V.R., Neophytidesc S.G., Labouc M., Jaksica J.M., Tunold R., Falarase P., Milan M. II Surface Science. -2007. -Vol. 601. -Is.9. -P. 1949−1966.
- Guoying C., Bare S.R., Mallouk Т.Е. Development of Supported Bifunctional Electrocatalysts for Unitized Regenerative Fuel Cells // J. Electrochem. Soc.,.2001. -Vol. 149, -Is. 8, -P. A1092-A1099.
- Pang H.L., Lu J.P., Chen J.H. Preparation of Sn02-CNTs supported Pt catalysts and their electrocatalytic properties for ethanol oxidation // Electrochimica Acta. -2009, -Vol. 54. -P. 2610−2615.
- Terrier С., Chatelon J.P. and Roger J. A. Analysis of Antimony Doping in Tin Oxide Thin Films Obtained by the Sol-Gel Method // Journal of Sol-Gel Science and Technology. -1997. -Vol. 10, -P. 75−81.
- Bouzidi С A., Moadhen H. Er3+"doped sol-gel Sn02 for optical laser and amplifier applications // Appl. Phys. -2008. -Vol. 90. -P. 465−469.
- Kamala Kanta Sahu, Chandana Rath, Naresh Chandra Mishra, et.al. Microstructural and Magnetic Studies on Hydrothermally Prepared Hematite // Journal of Colloid and Interface Science. -1997. -Vol. 185. -Is. 2. -P. 402−410.
- Yu-de Wang, Chun-lai Ma, Xiao-dan Sun andHeng-de Li. Preparation and characterization of Sn02 nanoparticles with a surfactant-mediated method // Nanotechnology. -2002. -Vol. 13. -P. 565−569.
- Brust M., Walker M., BethellD., Schijfrin D. J. and WhymanR. //J. Chem. Soc. Chem. Commun. -1994. -P. 8019S.A. Mayer В. R., Grebner W. and Wannemacher R. II J. Phys. Chem. B. -2000. -Vol. 104. -P. 7278.
- Deivaraj Т. C., Weixiang Chen, Jim Yang Lee. Preparation of PtNi nanoparticles for the electrocatalytic oxidation of methanol // J. Mater. Chem. -2003. -Vol. 13. -P. 2555−2560.
- Ahmadi T. S., Wang Z. L., Green Т. C., Henglein A. andEl-Sayed M. A.// Science. -1996. -Vol. 272. -P. 1924.
- Henglein A. and Giersig M. // J. Phys. Chem. B. -2000. -Vol. 104. -P. 6767.
- LiuH., SongC., Zhang L., Zhang J., WangH., Wilkinson D., et al. A review of anode catalysis in the direct methanol fuel cell // J Power Sources. -2006. -Vol. 155. -P. 95.
- Machida K., Fukuoka A., Ichikawa M., Enyio M. Preparation of platinum clusterderived electrodes from metal carbonyl complexes and theirelectrocatalytic properties for anodic oxidation of methanol // J Electrochem Soc.-1991.-Vol.138.-P. 1958.
- Longoni G., Chini P. Synthesis and chemical characterization of platinumлcarbonyl dianions Pt3(CO)6." «(n = -10,6,5,4,3,2,1). A new series of inorganic oligomers // J Am Chem Soc. -1976. -Vol. 98. -P. 7225.
- Dickinson A. J., Carrette L.P.L., Collins J.A., Friedrich K.A., Stimming U. Preparation of a Pt—Ru/C catalyst from carbonyl complexes for fuel cell applications // Electrochim Acta. -2002. -Vol. 47. -P. 3733.
- Yiwei Т., Xinhua D. Yongfang L. and Daoben Z. Preparation of gold, platinum, palladium and silver nanoparticles by the reduction of their salts with a weak reductant-potassium bitartrate // J. Mater. Chem. -2003. -Vol. 13. -P. 1069−1075.
- XiongL, Manthiram A. Catalytic activity of Pt-Ru alloys synthesized by a microemulsion method in direct methanol fuel cells // Solid State Ionics. -2005. -Vol. 176. -P. 385.
- Godoi D.R.M,. Perez J., Villullas H.M. Influence of particle size on the properties of Pt-Ru/C catalysts prepared by a microemulsion method // J. Electrochem. Soc. -2007. -Vol. 154. -P. B474.
- Liu H., Song C., Zhang L., Zhang J., et al. A review of anode catalysis in the direct methanol fuel cell // J Power Sources. -2006. -Vol. 155. -P. 95.
- Eriksson S., Nylen U., Rojas S., Boutonnet M. Preparation of catalysts from microemulsions and their applications in heterogeneous catalysts // Appl Catal. -2004. -Vol. 265. -P. A207.
- Liu H., Song C., Zhang L., et al. A review of anode catalysis in the direct methanol fuel cell // J Power Sources. -2006. -Vol. 155. -P. 95.
- Laine R.M., Sellinger A., inventors- Canon KK, assignee. Preparation of supported nano-sized catalyst particles via a polyol process. United States Patent US6551960 В1. 2003 Apr 22.
- Wang Y., Ren J., Deng K., Gui L. Preparation of tractable platinum, nanoclusters with small particle size in organic media // Chem Mater. -2001. -Vol. 2.-P. 1322.
- Bock C., Paquet C., Couillard M., Button G., MacDougall B. Size selected synthesis of PtRu nano-catalysts and their application for organic electro-oxidation reactions // J Am Chem Soc. -2004. -Vol. 126. -Is. 25. -P. 8028.
- Wang Y., Ren J., Deng K., Gui L., Tang Y. Preparation of tractable platinum, rhodium, and ruthenium nanoclusters with small particle size in organic media // Chem Mater. -2000. -Vol. 12. -P. 1622.
- Turkevich J., Stevenson P. C. and Hillier J. Discuss // Faraday Soc. -1951- -Vol. 11.-P. 55.
- Frens G.//Nature. -1973. -Vol. 241. -P. 20.
- Smith W. E., Garner M., Clarkson J. and White P. С. II Langmuir. -1995. -Vol. 11. -P. 3721
- Schmidt T.J. Noeske M., Gasteiger H.A., et al. Electrocatalytic activity of PtRu alloy colloids for CO and CO/H2 electrooxidation: stripping voltammetry and rotating disk measurements // Langmuir. -1997. -Vol. 13. -P. 2591.
- Bock C., Paquet C., Couillard M., Button G, MacDougall В. Size selected synthesis of PtRu nano-catalysts and their application for organic electro-oxidation reactions // J Am Chem Soc. -2004. -Vol. 126. -Is. 25. -P. 8028.
- Huidobro A., Sepulveda-Escribano A., and Rodriguez-Reinoso F. Vapor-Phase Hydrogenation of Crotonaldehyde on Titania-Supported Pt and PtSn SMSI Catalysts // Journal of Catalysis. -2002. -Vol. 212. -P. 94−103.
- Dubeau L., Coutanceau C., Gamier E., Leger J.M., Lamy C. Electrooxidation of methanol at platinum-ruthenium catalysts prepared from colloidal precursors: atomic composition and temperature effects // J Appl Electrochem. -2003. -Vol. 33. -P. 419.
- Moreira J., Del Angel P., Ocampo A. L., et.al. Synthesis, Characterization and Application of a Pd/Vulcan and Pd/C Catalyst in a Pem Fuel Cell // Int. Jour. Hydrogen Energy .-Vol. 29. -Is. 9. -P. 915.
- Современные проблемы электрохимии, перевод под ред. Я. М. Колотыркина, М: Мир, 1971, С. 350.
- Antoine О., Bultel Y., Durand R. Oxygen reduction reaction kinetics and mechanism on platinum nanoparticles inside Nafion®// Journal of Electroanalytical Chemistry. -2001.-Vol. 499. -P. 85−94.
- Штейнберг Г. В, Кукушкина И. А., Багоцкий B.C., Тарасевич M.P. // Электрохимия. -1979. -Т. 15, -№ 4. -С. 527
- BettJ., Kinoshita К., Routsis К. and Stonehart P. A Comparison of Gas-Phase and Electrochemical Measurements for Chemisorbed Carbon Monoxide and Hydrogen on Platinum Crystallites // J.Catal. -1973. -Vol.29. -Is.l. -P. 160.
- Kikuchi Т., Umenara M. Relation between antimony content and lattice parametersof Sb-Sn oxide // Jornal of Materials Science Leyyers. -1985. -Vol. 45.-P. 1051−1053.
- Справочник по электрохимии/ Под ред: A.M. Сухотина.- JI.: Химия, 1981. С. 149.
- Цирлина Г. А., Рогинская Ю. Е., Постовалоеа Г. Г., Васильев С. Ю. Оксидные наноструктуры Sn02-Ti02, Sn02-Zr02, Sn02-Sb0x, как зарядоаккумулирующие материалы. // Электрохимия. -1999. -Т. 35. -С 1380—1387.
- Hall S.C., Subramanian V., Teeter .G, Rambabu В. Influence of metal-support interaction in Pt/C on CO and methanol oxidation reactions // Solid State Ionics -2004. -Vol. 175. -P. 809.
- William H., Valdecir Paganin A. Methanol electro-oxidation on gas diffusion electrodes prepared with Pt- Ru/C catalysts // Electrochimica Acta. -2002. -Vol. 47. -P. 3715 3722.