博碩士論文 952203006 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:58 、訪客IP:3.142.210.157
姓名 巫洸毅(Kuang-Yi Wu)  查詢紙本館藏   畢業系所 化學學系
論文名稱 鉑-鎳雙金屬觸媒結構及電化學活性之研究
(Structure and Electrochemical Properties of Bimetallic Pt-Ni Catalysts)
相關論文
★ 岐狀結構材料在鋰電池的應用★ Adsorption and Electrochemical Polymerization of Pyrrole on Au (100) Electrode as Examine by In Situ Scanning Tunneling Microscopy
★ Synthesis and Characterization of Cyclopentadithiophene (CDT) based Organic Photovoltaic and Pyrazine Contained Hole Transporting Small Molecules★ 有機碘化物在金、銠、鉑(111)電極和有機二硫醇化物在鉑(111)電極的吸附結構
★ STM研究銥(111)上碘、一氧化碳和一氧化氮的吸附及銅(100)上鎳和鉛的沈積★ 利用掃描式電子穿隧顯微鏡觀察鍍銅在鉑(111)及銠(111)電極表面
★ 使用in-situ STM和循環伏安儀研究銅和銀在碘修飾的鉑(100)電極之沈積過程★ 利用in-situ STM觀察銅(100)電極上鉛與鎳的沉積過程
★ 利用in-situ STM觀察硫酸根、氧及碘在釕(001)電極和醋酸、間苯三酚在銠(111)電極的吸附結構★ 掃描式電子穿隧顯微鏡及循環伏安法對 有機碘化物在鉑(111)電極上的研究
★ 半導體碘化鉛薄膜在單結晶銠電極上的研究★ 利用掃描式電子穿隧顯微鏡觀察汞薄膜在銥(111)電極上鹵素的吸附結構
★ 掃描式電子穿隧顯微鏡研究碘原子對汞在 銥(111)、鉑(111)及銠(111)上沈積的影響★ 掃描式電子穿隧顯微鏡對烷基及芳基硫醇分子在鉑(111)及金(111)上之研究
★ 掃描式電子穿隧顯微鏡研究一氧化碳、硫、硫醇分子及氯在釕(001)上的吸附結構★ 硫氧化物及聚賽吩衍生物 在金、鉑電極上之研究
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   [檢視]  [下載]
  1. 本電子論文使用權限為同意立即開放。
  2. 已達開放權限電子全文僅授權使用者為學術研究之目的,進行個人非營利性質之檢索、閱讀、列印。
  3. 請遵守中華民國著作權法之相關規定,切勿任意重製、散佈、改作、轉貼、播送,以免觸法。

摘要(中) 以大角度X 光繞射及Debye 函數分析以形成羰基複合物方式合成不同金屬比例的以Vulcan XC-72 碳為載體的鉑-鎳奈米粒子,從大角度X 光繞射及Debye 函數模擬分析結果得知,在經由500℃以上高溫還原後,鉑-鎳合金觸媒具面心立方結構,其晶格常數會隨著鎳金屬比例的增加而降低。而經由較低溫200℃還原形成觸媒則可能是不均勻的奈米粒子,其內部應鉑跟鎳金屬原子團。穿透式電子顯微鏡結果指出鉑-鎳奈米粒子均勻分布在碳載體上,且粒徑分布約為3~4奈米。藉由能量分散光譜儀確認觸媒組成比例與起始反應物比例接近。我們使用薄膜旋轉電極實驗方式研究氧氣還原反應,結果顯示
鉑-鎳合金的奈米粒子其電化學活性和鉑為基底的觸媒類似。
摘要(英) Vulcan XC-72 cabon-support Pt-Ni nanoparticle catalysts with different Pt/Ni atomic compositions were prepared via the carbonyl complex route and their structures were studied by X-ray diffraction at wide angles(WAXS) and Debye function analysis (DFA). WAXS pattern and DFA simulation revealed that all the as-prepared
Pt-Ni alloy catalysts after higher temperature(500℃) treatment have face-centered cubic structure with lattice constants decreasing with the increase of Ni content. Catalysts prepared by heat treatment at 200℃ appeared to be inhomogeneous made of Ni and Pt mono crystallites. Transmission electron microscopy (TEM) images indicated that Pt-Ni nanoparticles were well dispersed on the surface of the carbon support with a narrow
particle size distribution. Energy-dispersive X-ray analysis (EDX) confirmed that the catalyst compositions were nearly the same as the nominal values. We conducted thin film rotating disk electrode experiments to study the oxygen reduction reaction. Results showed that the electrochemical activity of Pt-Ni alloyed catalysts were nearly the same as that of Pt-based catalysts supported by carbon.
關鍵字(中) ★ 奈米粒子
★ 鉑
★ 鎳
★ 觸媒
★ 燃料電池
關鍵字(英) ★ nanoparticles
★ Pt
★ Ni
★ catalysts
★ fuel cell
論文目次 摘要……...……………………………………….……………………… i
Abstract.……………………………………………………….………… ii
謝誌……………………………………………………………………….iii
Table of contents…………………………………………………..…….. iv
Figure of contents……………………………………………………….. .vi
Chapter 1.Introduction……...……………………………………….…1
1.1 Fuel Cells…...………………………………………………………...1
1.2 Characteristics of Fuel Cells…………......……………………….…..2
1.3 Limitations for fuel cell…………….…………………………….......4
1.4 Electrocatalysts used in the Anode and Cathode of Fuel cells………..5
1.5 Applications of Fuel Cells……………………………………………6
1.6 Literature review………………………………………………...……6
Chapter 2. Experimental ………............................................................11
2.1 Preparation of Carbon–Supported Pt-Ni Nanoparticle Catalysts…....11
2.2 Physical Characterization of the Pt-Ni Catalysts…………………….11
2.2.1Transmission Electron Microscope (TEM)…………………………11
2.2.2Energy Dispersive X-ray Spectrometer (EDX)……………….…....13
2.2.3X-ray diffractometer………………………………………………..14
2.2.4 In situ X-ray diffraction…….……………………………………...15
2.2.5Debye function analysis……………………………………………15
2.2.6 X-ray photoelectron spectroscopy (XPS)…………………………17
2.3Electrode preparation and Electrochemical Measurement…………..18
2.4 Reagents and Gases…………………………………………………19
Chapter 3. Result and Discussion……………………………..………21
v
3.1 Preparation Pt-Ni Nanoparticles…………………………………….21
3.2 X-ray diffraction, Debye function analysis, line profile fitting…….21
3.3 Transmission Electron Microscope………………………….………26
3.4 Energy Dispersive X-ray Analysis and X-ray Photoelectron
Spectroscopy……………………..………………………………….27
3.5 Cyclic Voltammery…………….……………………………………28
3.6 Linear sweep voltammery…………………………………………...30
3.7 Tafel plots……………………………………………………………31
3.8 Oxygen reduction reaction activity………………………………….32
Chapter 4. Conclusion ……………………………………...………….58
Reference………………………………………………………………...59
參考文獻 (1) Xiong, L. M., A. . J. Electrochem. Soc. 2005, 152, A697.
(2) Antolini, E. Mater.Chem.Phys. 2003, 78, 563.
(3) Antolini, E. S., J.R.C.; Giz,M.J.; Gonzalez,E.R. Int. J. Hydrogen Energy
2005, 30, 1213.
(4) Antolini, E. P., R.R.; Ticianelli,E.A. Electrochim. Acta 2002, 48, 263.
(5) Cambanis, G. C., D. Appl.Catal. 1986, 25, 191.
(6) Beard, B. C. R. J., P.N. J. Electrochem. Soc. 1990, 137, 3368.
(7) Min, M. C., J.; Cho,K.; Kim,H. Electrochim. Acta 2000, 45, 4211.
(8) Salgado, J. R. C. A., E.; Gonzalez,E.R. . J.Phys.Chem.B 2004, 108, 17767.
(9) Santiago, E. I. V., L.C.; Villullas, H.M. . J.phys.Chem.C 2007, 111, 3146.
(10) Watanabe, M. T., K.; Nakamura, T.; Stonehart, P. J. Electrochem. Soc. 1994,
141, 2659.
(11) Xiong, L. K., A.M.; Manthiram, A. Electrochem. Commun. 2002, 4, 898.
(12) Tseng, C. J. L., S.T. ; Lo, S.C. ; Chu,P.P. Mater.Chem.Phys. 2006, 100, 385.
(13) Beard, B. C. R. J., P.N. . J. Electrochem. Soc. 1986, 133, 1839.
(14) He, T. K., E.; Xiong, L.; Luo, J.; Zhong, C.J. J. Electrochem. Soc. 2006, 153,
A1637.
(15) Li, H. S., G.; Li, N.; Sun, S.; Su, D.; Xin, Q. . J.Phys.Chem.C 2007, 111,
5605.
(16) Liu, J. M., M.M.; Petkov, V.; Kariuki, N.N.; Wang, L.; Njoki, P.; Mott, D.;
Lin, Y. Z., C.J. Chem. Mater. 2005, 17, 3086.
(17) Ross, P. N. Electrochim. Acta 1991, 36, 2053.
(18) Glass, J. T. C., G.L.; Stoner, G.E.; Taylor, E.J. . J. Electrochem. Soc. 1987,
134, 58.
(19) Waterstrat, R. M. Metal. Trans. 1973, 4, 455.
(20) Toda, T. I., H.; Uchida, H.; Watanabe, M. . J. Electrochem. Soc. 1999, 146,
3750.
(21) Bett, J. A. K., K.; Stonehart, P. J.Catal. 1974, 35, 307.
(22) Bett, J. A. K., K.; Stonehart, P. . J.Catal. 1976, 41, 124.
(23) Giordano, N. P., E.; Pino, L.; Aricò, A.; Antonucci, V.; ; Vivaldi, M. K., K.
Electrochim. Acta 1991, 36, 1979.
(24) Kinoshita, K. J. Electrochem. Soc. 1990, 137, 845.
(25) Antolini, E. J. Mater. Sci. 2003, 38, 2995.
(26) Antonucci, P. L. A., V.; Giordano, N.; Cocke, D.L.; Kim, H. J. Appl.
Electrochem. 1994, 24, 58.
(27) Han, K. S. M., Y.S.; Han, O.H.; Hwang, K.J.; Kim, I.; Kim, H. .
Electrochem. Commun. 2007, 9, 317.
(28) Kabbabi, A. G., F.; Andolfatto, F.; Durand, R. J. Electroanal. Chem. 1994,
373, 251.
(29) Peuckert, M. Y., T.; Betta, R.A.D.; Boudart, M. . J. Electrochem. Soc. 1986,
133, 944.
(30) Schmidt, T. J. S., V.; Arenz, M.; Markovic, N.M.; Ross Jr., P.N. .
electrochim. Acta 2002, 47, 3765.
(31) Shaijumon, M. M. R., S.; Rajalakshmi, N. Appl. Phys. Lett 2006, 88, 253105.
(32) Takasy, Y. O., N.; Zhang, X.G.; Murakami, Y.; Minagawa, H.; Sato, S.; ;
Yahikozawa, K. Electrochim. Acta 1996, 41, 2595.
(33) Tian, J. H. W., F.B.; Shan, Z.Q.; Wang, R.J.; Zhang, J.Y. J. Appl.
Electrochem. 2004, 34, 461.
(34) Watanabe, M. S., H.; Stonehart, P. J. Electroanal. Chem. 1989, 261, 375.
(35) Yano, H. Y. I., J.; Uchida, H.; Watanabe, M.; Babu, P.K.; Kobayashi, T. ;
Chung, J. H. O., E.; Wieckowski, A. . Phys. Chem. Chem. Phys. 2006, 8, 4932.
(36) Sattler, M. L. R., P.N. Ultramicroscopy 1986, 20, 21.
(37) Bett, J. L., J.; Washinton, E.; Stonehart, P. . Electrochim. Acta 1973, 18, 343.
(38) Antolini, E. C., F.; Giacomerri, E.; Squadrito, G. . J. Mater. Sci. 2002, 37,
133.
(39) Jalan, V. T., E.J. j. Electrochem. Soc. 1983, 130, 2299.
(40) Paffett, M. T. B., J.G.; Gottesfeld, S. . j. Electrochem. Soc. 1988, 135, 1431.
(41) Col´on-Mercado, H. R. P., B.N. . J. Power Sources 2006, 155, 253.
(42) Roh, W. C., J.; Kim, H. J. Appl. Electrochem. 1996, 26, 623.
(43) Calabrese, J. C. D., L. F.; Cavalieri, A.; Chini, P.; Longoni, G.; Martinengo,
S. J. Am. Chem. Soc. 1974, 96, 2614.
(44) Calabrese, J. C. D., L. F.; Chini, P.; Longoni, G.; Martinengo, S. J. Am.
Chem. Soc. 1974, 96, 2616.
(45) Longoni, G. C., P. J. Am. Chem. Soc. 1976, 98, 7225.
(46) Vogel, W. S., W.M.H.; Zhang, Z.; Bunsenges, Ber. J. Phys. Chem. 1993, 97,
280.
(47) Iijima, S. I., T. Phys. Rev. Lett. 1986, 56, 616.
(48) Smith, D. J.; Petford-Long, A. K. W., L. R.; Bovin, J.-O. . Science 1986, 233,
872.
(49) Whetten, R. L. K., J. T.; Alvarez, M. M.; Murthy, S.; Vezmar, I.; Wang, Z.
L. S., P. W.; Cleveland, C. L.; Luedtke, W. D.; Landman, U. . Adv. Mater. 1996, 8, 428.
(50) Hall, B. D. F. e., M.; Monot, R.; Borel, J.-P. . Phys. Rev. B 1991, 43, 3906.
(51) Reinhard, D. B., P.; Hall, B. D.; Valkealahti, S.; Monot, R. . phys. Rev. B
1998, 58, 4917.
(52) Reinhard, D. H., B. D.; Berthoud, P.; Valkealahti, S.; Monot, R. . Phys. Rev.
Lett. 1997, 79, 1459.
(53) Gnutzmann, V. V., W. . J. Phys. Chem. 1990, 94, 4991.
(54) Vogel, W. B., J.; Vollmer, O.; Abraham, I. . J. Phys. Chem. B 1999, 102,
10853.
(55) Vogel, W. C., D. A. H.; Tanaka, K.; Haruta, M. Catal. Lett 1996, 40, 175.
(56) Vogel, W. R., B.; Tesche, B. J. Phys. Chem. 1993, 97, 11611.
(57) Vogel, W. B., W.; Bo¨nnemann, P.; Rothe, H.; Hormes, J. J. Phys. Chem. B
1997, 107, 11029.
(58) Wang, G. V. H., M.A.; Ross, P.N.; Baskes, M.I. Pro. Sur. Sci. 2005, 79, 28.
(59) Claviliera, J. O., J.M.; Gómezb, R.; Feliub, J.M.; Aldaz, A. . J. Electroanal.
Chem. 1996, 404, 281.
(60) Furuya, N. I., M.; Shibata, M. J. Electroanal. Chem. 1999, 460, 251.
(61) Furuya, N. S., M. J. Electroanal. Chem. 1999, 467, 85.
(62) Schmidt, T. J. G., H. A.; Sta¨b, G. D.; Urban, P. M.; Kolb,; D. M.; Behm, R.
J. J. Electrochem. Soc. 1998, 145, 2354.
(63) Paulus, U. A. S., T. J.; Gasteiger, H. A.; Behm, R. J. J. Electroanal. Chem.
2001, 495, 134.
(64) Paulus, U. A. W., A.; Scherer, G. G.; Schmidt, T. J.; Stamenkovic, V. M., N.
M.; Ross, P. N. . Electrochim. Acta 2002, 47, 3787.
(65) Duron, S. R.-N., R.; Nkeng, P.; Poillerat, G.; Solorza-; Feria, O. J.
Electroanal. Chem. 2004, 566, 281.
(66) Maillard, F. M., M.; Gloaguen, F.; Leger, J. M. Electrochim. Acta 2002, 47,
3431.
(67) Lucas, C. A. M., N. M.; Ross, P. N. Phys. Rev. B 1997, 55, 7964.
(68) Mukerjee, S. S., S.; Soriaga, M.P. J. Electrochem. Soc. 1995, 142, 1409.
(69) Toda, T. I., H.; Uchida, H.; Watanabe, M. J. Electrochem. Soc. 1999, 141,
968.
(70) Yeager, E. R., M.; Gervasio, D.; Tryk, D. The Electrochemical Society
Proceedings Series; Pennington: NJ, 1992.
(71) Griffiths, J. S. Proc. Roy. Soc. (A) 1956, 235, 23.
指導教授 姚學麟(Shueh-Lin Yau) 審核日期 2008-7-23
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明