Reference
|
-
8. S. R. Narayanan, S. Gottesfelf, T. Zawodzinski, Direct Methanol Fuel Cells,
連結:
-
Electrochemical Society (2001).
連結:
-
11. S. Megahed and B. Scrosati, The Electrochemical Society Interface, Winter, 34 (1995).
連結:
-
12. J. R. Owen, Chem. Soc. Rev. 26, 259 (1997).
連結:
-
19. A. Mabuchi, K. Tokumitsu, H. Fujimoto and T. Kasuh, J. Electrochem. Soc. 142, 1041 (1995).
連結:
-
21. E. Peled, J. Electrochem. Soc. 126, 2047 (1979).
連結:
-
24. E. Buiel and J. R. Dahn, Electrochim. Acta 45, 121 (1999).
連結:
-
25. W. Xing and J. R. Dahn, J. Electrochem. Soc. 144, 1195 (1997).
連結:
-
26. H.-Y. Lee, J.-K. Baek, J Power Sources 101, 206 (2001).
連結:
-
28. J. Zhang and A. A. Anani, U.S. Patent no. 5,609,844 (1997).
連結:
-
29. K. Yanagida and A. Yanai, J. Electrochem. Soc. 149, A804 (2002).
連結:
-
30. B. Gao and A. Kleinhammes, Chem. Phys. Lett. 307, 153 (1999).
連結:
-
31. E. Frackowial and F. Leroux, J. Power Sources 81-82, 317 (1999).
連結:
-
32. N. Li and C. R. Martin, J. Electrochem. Soc. 148, A164 (2001).
連結:
-
35. L. J. Krause and J. R. Dahn, Electrochem. Solid-State Lett. 2, 3 (1999).
連結:
-
40. I. A. Courtney and J. R. Dahn, J. Electrochem. Soc. 144, 2045 (1997).
連結:
-
41. I. A. Courtney and J. R. Dahn, J. Electrochem. Soc. 144, 2943 (1997).
連結:
-
46. V. Mehta and J. S. Cooper, J. Power Sources 114, 32 (2003).
連結:
-
48. T. R. Ralph and M. P. Hogarth, Platinum Metals Rev. 46, 3 (2002).
連結:
-
52. A. S. Arico, S. Srinivasan and V. Antonucci, Fuel Cells 1, 133 (2001).
連結:
-
53. T. Schultz, S. Zhou and K. Sundmacher, Chem. Eng. Technol. 24, 1223 (2001).
連結:
-
54. J. Kua and W. A. Goddard III, J. Am. Chem. Soc. 121, 10928 (1999).
連結:
-
55. A. Hamnett, Catal. Today 38, 445 (1997).
連結:
-
56. J. W. Long, R. M. Stroud, K. E. Swider and D. R. Rolison, J. Phys. Chem. B 104, 9772 (2000).
連結:
-
58. S. Wasmus and A. Kűver, J. Electroanal. Chem. 461, 14 (1999).
連結:
-
66. G. Cacciola, V. Antonucci and S. Freni, J. Power Sources 100, 67 (2001).
連結:
-
67. D. G. Ivey and D. O. Northwood, J. Mater. Sci. 18, 321 (1983).
連結:
-
70. A. Pebler and E. A. Gulbransen, Electrochem. Technol. 4, 211 (1966).
連結:
-
71. D. Shaltiel, J. Less-Common. Met. 62, 407 (1978).
連結:
-
72. D. J. Thoma and J. H. Perepezko, J. Alloys Compd. 224, 330 (1995).
連結:
-
74. B. A. Kolachev and A. A. Ilyin, Int. J. Hydrogen Energy 21, 975 (1996).
連結:
-
76. A. Anani, A. Visintin, K. Petrov, S. Srinvasan, J. J. Reoly, J. R. Johonson, R. B. Schwarz and P. B. Desch, J. Power Source 47, 26 (1994).
連結:
-
77. L. Schlapbach and A. Zuttel, Nature 414, 353 (2001).
連結:
-
78. N. Chi, P. He and J. L. Luo, Electrochim. Acta 44, 3549 (1999).
連結:
-
82. M. Broussely, P. Biensan, and B. Simon, Electrochim. Acta, 45, 3 (1999).
連結:
-
83. M. S. Michael, A. Fauzi, and S. R. S. Prabaharan, Int. J. Inorg. Mater. 2, 261 (2000).
連結:
-
90. K. Scott, W. M. Taama and P. Argyropoulos, J. Power Sources 79, 43 (1999).
連結:
-
91. S. Mukerjee and J. McBreen, J. Electrochem. Soc. 146, 600 (1999).
連結:
-
92. S. Swathirajan and Y. M. Mikhail, J. Electrochem. Soc. 138, 1321 (1991).
連結:
-
95. J. Kua and W. A. Goddard III, J. Am. Chem. Soc. 121, 10928 (1999).
連結:
-
96. A. Hamnett, Catal. Today 38, 445 (1997).
連結:
-
98. R. Viswanathan, G. Hou, R. Liu, S. R. Bare, F. Modica, G. Mickelson, C. U. Segre, N. Leyarovska and E. S. Smotkin, J. Phys. Chem. B 106, 3458 (2002).
連結:
-
100. J. McBreen and S. Mukerjee, J. Electrochem. Soc. 142, 3399 (1995).
連結:
-
102. A. E. Dwight, Trans. Am. Soc. Met. 53, 479 (1961).
連結:
-
103. H. Yamada and M. Shimizu, Phys. Lett. A 117, 313 (1986).
連結:
-
110. K. Yoshimura and Y. Nakamura, J. Magn. Magn. Mater. 40, 55 (1983).
連結:
-
112. S. Asano and S. Ishida, J. Magn. Magn. Mater. 70, 39 (1987).
連結:
-
113. H. Yamada and M. Shimizu, J. Magn. Magn. Mater. 70, 47 (1987).
連結:
-
114. H. Fujii, M. Saga and T. Okamoto, J. Less-Common Met. 130, 25 (1987).
連結:
-
Vigneron, J. Alloys Compds. 274, 59 (1998).
連結:
-
123. J. Przewoznik, J. Zukrowski and K. Krop, J. Magn. Magn. Mater. 140, 807 (1995).
連結:
-
125. B. Baranowski, S. M. Filipek, High pressure chemical synthesis, J. Jurczak, B. Baranowski, Ed., Elsevier, Amsterdam, pp. 55–100.
連結:
-
127. A. R. West, Basic Solid State Chemistry, John Wiley & Sons, Singapore (1991).
連結:
-
128. A. C. Larson and R. B. Von Dreele, General Structure Analysis System, Los Alamos National Laboratory, Los Alamos, NM (1994).
連結:
-
129. H. M. Rietveld, J. Appl. Cryst. 2, 65 (1969).
連結:
-
130. G. Malmros and J. O. Thomas, J. Appl. Cryst. 10, 7 (1977).
連結:
-
132. D. B. Williams and C. B. Carter, Transmission Electron Microscopy, Plenum Press, New York (1996).
連結:
-
134. J. E. Penner-Hahn, Coord. Chem. Rev. 190, 1101 (1999).
連結:
-
136. D. C. Koningsberger and R. Prins, X-Ray Absorption: Principles, Applications Techniques of EXAFS, SEXAFS and XANES, John Wiley & Sons (1988).
連結:
-
139. J. Clarke, W. M. Goubau and M. B. Ketchen, J. Lower Temp. Phys. 25, 99 (1976).
連結:
-
140. 儀器總覽: 化學分析儀器,藍啟仁,感應耦合電漿原子發射光譜儀 (Inductively Coupled Plasma Atomic Emission Spectrometer,ICP-
連結:
-
141. P. W. J. M. Boumans, Inductively Coupled Plasma Emission Spectrometry Part 1: Methodology, Instrumentation, and Performance, New York: John Wiley & Sons (1987).
連結:
-
142. M. Thompson and J. W. Walsh, A Handbook of Inductively Coupled Plasma Spectrometry, London: Blackie (1983).
連結:
-
144 D. A. Skoog and J. L. Leary, Principles of Instrumental Analysis, 4th Ed., New York: Saunders College Publishing (1992).
連結:
-
151. S. H. Park, J. Winnick and P. A. Kohl, J. Electrochem. Soc. 149, A1196 (2002).
連結:
-
156. Z. Hou, B. Yi, H. Yu, Z. Lin and H. Zhang, J. Power Sources 123, 116 (2003).
連結:
-
157. E. Gülzow, R. Reissner, S. Weisshaar and T. Kaz, Fuel Cells 3, 48 (2003).
連結:
-
158. S. Mukerjee and R. C. Urian, Electrochim. Acta 47, 3219 (2002).
連結:
-
162. A. V. Irodova, O. A. Lavrova, G. V. Laskova and L. N. Padurets, Sov. Phys. Solid State 24, 22 (1982).
連結:
-
165. O. K. Andersen, Phys. Rev. B 12, 3060 (1975).
連結:
-
167. Wigner, E. P., Phys. Rev. 46, 1002 (1934).
連結:
-
1. http://www.nsc.gov.tw/dept/acro/version01/battery/electric/basictheory/kinds.htm
-
2. http://prodb.matsushita.co.jp
-
3. http://www.protom.org/battery/w10.html
-
4. http://www.tbcl.co.jp/primary/pr/index.html
-
5. http://www.gsdenchi.co.jp
-
6. http://www.tocad.co.jp/energy.htm
-
7. http://www.grc.nasa.gov/WWW/RT1997/5000/5420hoberecht.htm
-
9. http://www.cea.fr/gb/publications/Clefs44/an-clefs44/clefs4453a.html
-
10. http://www.techno-chubu.co.jp/
-
13. J. Yamaki, S. Tobishima., K. Hayashi, K. Saito, Y. nemoto and M. Arakawa, J. Power Sources 74, 219 (1998).
-
14. T. Nagaure and K. Tozana, Progress in Batteries & Solar Cells 9, 209 (1990).
-
15. 王富田,工業材料 180,100 (2001)。
-
16. J. D. Bernal, Proc. Roy. Soc. A 106, 749 (1924).
-
17. 王婉純,工業材料 178,139 (2001)。
-
18. V. A. Nalimova and K. N. Semenko, Carbon 32, 1319 (1994).
-
20. C. Lampe-Onnerud, J. Shi, P. Onnerud, R. Chamberlain and B. Barnett, J. Power Sources 97-98, 133 (2001).
-
22. 陳金銘,工業材料 133,85 (1998)。
-
23. J. R. Dahn, T. Zheng, Y. Liu and J. S. Xue, Science 270, 590 (1995).
-
27. 王富田與陳金銘,工業材料 203, 79 (2003)。
-
33. B. Gao, S. Sinha, L. Fleming and O. Zhou, Adv. Mater. 11, 816 (2001).
-
34. N. Li, C. J. Patrissi, G. Che and C. R. Martin, J. Electrochem. Soc. 147, 2044 (2000).
-
36. Y. Idota, T. Kubota, A. Matsufuji, Y. Maekawa and T. Miyasaka, Science 276, 1395 (1997).
-
37. V. M. Cepak, J. C. Hulteen, G. Che, K. B. Jirage, B. B. Lakshmi, E. R. Fisher and R. Martin, Chem. Mater. 9, 1065 (1997).
-
38. G. Che, B. B. Lakshmi, E. R. Fisher and C. R. Martin, Nature 393, 346 (1998).
-
39. G. Che, B. B. Lakshmi, C. R. Martin, E. R. Fisher and R. S. Ruoff, Chem. Mater. 10, 260 (1998).
-
42. 謝建德,工業材料 203,108 (2003)。
-
43. 邱昱仁、顏宇欣與賴秋助,工業雜誌 202,122 (2003)。
-
44. 黃秋萍、薛康琳、吳富其與高志勇,工業材料 202,141 (2003)。
-
45. K. Sundmacher, T. Schulz, S. Zhou, K. Scott, M. Ginkel and E. D. Gilles, Chem. Eng. Sci. 56, 333 (2001).
-
47. 薛康琳、彭裕民,工業材料 202,112 (2003)。
-
49. K.-W. Park, J.-H. Choi, S.-A. Lee, C. Pak, H. Chang and Y.-E. Sung, J. Catal. 224, 236 (2004).
-
50. C. Helbling, “Technology and Markets of Micro Fuel Cell Systems”, International Workshop on Power MEMS 2002 Technical Digest, Tsukuba, Japan (2002).
-
51. J. Hallmark, “End User Perspective-Industrial Consumer Electronics Power”, Motorola Labs Report (2002).
-
57. L. Carrette, K. A. Friedrich and U. Stimming, Chem. Phys. Chem. 1, 162 (2000).
-
59. 陳陵援、林修正,科學發展 370,26 (2003)。
-
60. K. A. Starz, E. Auer, Th. Lehmann and R. Zuber, J. Power Sources 84, 167 (1999).
-
61. 陳郁文,科學發展 370,34 (2003)。
-
62. K. Murata, K. Kaneko, F. Kokai, K. Takahashi, M. Yudasaka and S. Iijima, Chem. Phys. Lett. 331, 14 (2000).
-
63. S. H. Joo, S. J. Choi, I. Oh, J. Kwak, Z. Liu, O. Terasaki and R. Ryoo, Nature 412, 169 (2001).
-
64. 盧敏彥、黃俊傑、張美元與廖怡萱,工業材料 202,129 (2003)。
-
65. B. C. H. Steele and A. Heinzel, Nature 414, 345 (2001).
-
68. 廖世傑、洪松慰,工業材料 190,147 (2002)。
-
69. T. B. Massalski, Theory of Alloy Phases, American Society for Metals, Cleveland, Ohio (1956).
-
73. R. P. Elliot and W. Rostocker, Trans. Am. Soc. Met. 50, 617 (1958).
-
75. 林文德與廖世傑,工業材料 190,155 (2002)。
-
79. K. H. J. Buschow, P. C. P. Bouten and A. R. Miedema, Rep. Prog. Phys. 45, 937 (1982).
-
80. 廖世傑,工業材料 190,139 (2002)。
-
81. T. Nagaura and K. Tozawa, Prog. Batt. Solar Cells, 9, 209 (1990).
-
84. J. Gopalakrishnan, N. S. P. Bhuvanesh, R. Vijayaraghavan, and N. Y. Vasanthacharya, J. Mater. Chem., 7, 307 (1997).
-
85. W. E. O’Grady, S. M. Heald, D. E. Sayers and J. I. Budnick, Electrochem. Soc. Extended Abstracts 83-1, 728 (1983).
-
86. R. S. Weber, M. Peuckert, R. A. DallaBetta and M. Boudart, J. Electrochem. Soc. 135, 2535 (1988).
-
87. M. E. Herron, S. E. Doyle, S. Pizzini, K. J. Roberts, J. Robinson, G. Hards and F. C. Walsh, J. Electroanal. Chem. 324, 243 (1992).
-
88. H.Yoshitake, T. Mochizuki, O. Yamazaki and K.-I. Ota, J. Electroanal. Chem. 361, 229 (1993).
-
89. A. N. Mansour, J. W. Cook, Jr. and D. E. Sayers, J. Phys. Chem. 88, 2330 (1984).
-
93. E. Reddington, A. Sapienza, B. Gurau, R. Viswanathan, S. Sarangapani, E. S. Smotkin and T. E. Mallouk, Science 280, 1735 (1998).
-
94. S. D. Lin, T. C. Hsiao, J. R. Chang and A. S. Lin, J. Phys. Chem. B 103, 97 (1999).
-
97. M. S. Nashaner, A. I. Frenkel, D. L. Adler, J. R. Shapley and R. G. Nuzzo, J. Am. Chem. Soc. 119, 7760 (1997).
-
99. A. E. Russell, S. Maniguet, R. J. Mathew, J. Yao, M. A. Roberts and D. Thompsett, J. Power Sources 96, 226 (2001).
-
101. H.-G. Haubold, P. Hiller, H. Jungbluth and T. Vad, Jpn. J. Appl. Phys. 38, 36 (1999).
-
104. Y. Nakamura, M. Shiga and S. Kawano, Physica B 120, 212 (1983).
-
105. H. Wada, H. Nakamura, K. Yoshimura, M. Shiga and Y. Nakamura, J. Magn. Magn. Mater. 70, 134 (1987).
-
106. T. Okamoto, H. Nagata, H. Fujii and Y. Makihara, J. Magn. Magn. Mater. 70, 139 (1987).
-
107. M. Shiga, H. Wada, H. Nakamura, K. Yoshimura and Y. Nakamura, J. Phys. F 17,1781 (1987).
-
108. G. Oomi, T. Terada, M. Shiga and Y. Nakamura, J. Magn. Magn. Mater. 70, 137 (1987).
-
109. R. Ballou, J. Deportes, R. Lemaire, Y. Nakamura and B. Ouladdiaf, J. Magn. Magn. Mater. 70, 129 (1987).
-
111. H. Nakamura, N. Metoki, S. Suzuki, F. Takayanagi and M. Shiga, J. Phys.: Condens. Matter 13, 475 (2001).
-
115. J. Przewoznik, V. Paul-Boncour, M. Latroche and A. Percheron-Guegan, J. Alloys Compds. 225, 436 (1995).
-
116. M. Latroche, V. Paul-Boncour, J. Przewoznik, A. Percheron-Guegan and F. Bouree-Vigneron, J. Alloys Compds. 231, 99 (1995).
-
117. M. Latroche, V. Paul-Boncour, A. Percheron-Guegan and F. Bouree-
-
118. H. Figiel, A. Lindbaum, Cs. Kapusta and E. Gratz, J. Alloys Compds. 217, 157 (1995).
-
119. H. Figiel, J. Przewoznik, V. Paul-Boncour, A. Lindbaum, E. Gratz, M. Latroche, M. Escorne, A. Percheron-Guégan and P. Mietniowski, J. Alloys Compds. 274, 29 (1998).
-
120. I. N. Goncharenko, I. Mirebeau, A. V. Irodova and E. Suard, Phys. Rev. B 56, 2580 (1997).
-
121. M. Latroche, V. Paul-Boncour, A. Percheron-Guégan, F. Bourée-Vigneron and G. André, Physica B 276, 666 (2000).
-
122. M. Latroche, V. Paul-Boncour, A. Percheron-Guégan, F. Bourée-Vigneron and G. André, Physica B 234, 599 (1997).
-
124. M. Latroche, V. Paul-Boncour, A. Percheron-Guégan, F. Bourée-Vigneron and G. André, J. Solid State Chem. 154, 398 (2000).
-
126. S.M. Filipek, V. Paul-Boncour, A. Percheron-Guégan, I. Jacob, I. Marchuk, M. Dorogova, T. Hirata, Z. Kaszkur, J. Phys.: Condens. Matter 13, 475 (2001).
-
131. A. Sakthivel and R. A. Young, User’s guide to programs DBWS-9600 and DBWS-9600PC (1992).
-
133. 汪建民主編,材料分析,吳泰伯、李信義、李志甫,第四章 X光薄膜分析技術,中國材料科學學會 (1998)。
-
135. 儀器總覽: 材料分析儀器,李志甫,X光吸收光譜 (X-ray Absorption Spectroscopy,XAS),行政院國家科學委員會精密儀器發展中心 (1998)。
-
137. 楊鴻昌,科儀新知,第十二卷第六期,72 (1991)。
-
138. 儀器總覽: 基本物理量量測儀器,黃清鄉,超導量子干涉儀 (Superconducting Quantum Interference Device,SQUID),行政院國家科學委員會精密儀器發展中心 (1998)。
-
AES),行政院國家科學委員會精密儀器發展中心 (1998)。
-
143. 林宏明與楊末雄,科儀新知 4,64 (1982)。
-
145. R. A. Bair and W. A., III Goddard, Phys. Rev. B 22, 2767 (1980).
-
146. J. Wang, F. W. Lytle, R. P. Messmer and D. H. Maylotte, Phys. Rev. B 30, 5596 (1984).
-
147. S. Denis, E. Baudrin, M. Touboul and J.-M. Tarascon, J. Electrochem. Soc. 144, 4099 (1997).
-
148. P. Poizot, S. Laruelle, S. Grugeon, L. Dupont and J.-M. Tarascon, Nature 407, 496 (2000).
-
149. A. Debart, B. Revel, L. Dupont, L. Montagne, J.-B. Leriche, M. Touboul and J.-M. Tarascon, Chem. Mater. 15, 3683 (2003).
-
150. M. Zhao, M. Xu, H. D. Dewald and R. J. Staniewiczb, J. Electrochem. Soc. 150, A117 (2003).
-
152. J. W. Braithwaite, A. Gonzales, G. Nagasubramanian, S. J. Lucero, D. E. Peebles, J. A. Ohlhausen and W. R. Cieslak, J. Electrochem. Soc. 146, 448 (1999).
-
153. H. Yang, K. Kwon, T. M. Devine and J. W. Evans, J. Electrochem. Soc. 147, 4399 (2000).
-
154. M.-S. Löffler, H. Natter, R. Hempelmann and K. Wippermann, Electrochim. Acta 48, 3047 (2003).
-
155. S. Park, A. Wieckowski and M. J. Weaver, J. Am. Chem. Soc. 125, 2282 (2003).
-
159. H.Yoshitake, T. Mochizuki, O. Yamazaki, and K.-I. Ota, J. Electroanal. Chem. 361, 229 (1993).
-
160. A. N. Mansour, J. W. Cook, Jr., and D. E. Sayers, J. Phys. Chem. 88, 2330 (1984).
-
161. D. Fruchart, A. Rouault, C. B. Shoemaker and D. P. Shoemaker, J. Less-Common Metals 73, 363 (1980).
-
163. V. Paul-Boncour and A. Percheron-Guégan, J. Alloys Compd. 293-295, 237 (1999).
-
164. D. D. Koeling and G. O. Arbman, J. Phys. F 5, 2041 (1975).
-
166. 王銀國,台灣大學物理研究所博士論文,以第一原理計算研究過渡金屬化合物的電子結構、X光吸收光譜、光學性質及磁學特性 (2003)。
-
168. Hedin, L. and B. I. Lundqvist, J. Phys. C 4, 2064 (1971).
|