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化学进展  2011 

中低温固体氧化物燃料电池阴极材料

, PP. 418-429

Keywords: 固体氧化物燃料电池,阴极,钙钛矿,中低温化

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Abstract:

固体氧化物燃料电池(SOFCs)作为一种高效的能量转化装置,其成功应用将有效地节约能源和降低能源利用过程中环境污染物的排放,对人类社会的可持续发展意义重大。低温化可加快SOFCs商品化的步伐,而其关键在于开发高性能的阴极材料。本论文对近年来在中低温SOFCs阴极材料方面的研究进展进行了较全面的综述,其中包括Ba0.5Sr0.5Co0.8Fe0.2O3-δ系列材料、具有两维氧离子传导特性的LnBaCo2O5+δ双钙钛矿型材料及其他的钴基钙钛矿型材料、非钴基阴极和贵金属修饰阴极,以及浸渍法制备的纳米修饰阴极等,指出了各种材料的优缺点及将来的发展趋势,重点介绍了本课题组在最近5年来在此方面所做的努力。质子导电型SOFCs最近几年来受到了人们的广泛关注,由于其阴极的氧还原行为与常规以氧离子导体为电解质的SOFCs有所不同,所以我们对其进行了单独的综述。最后,提出了SOFCs阴极材料的发展趋势。

References

[1]  Simner S P, Bonnett J F, Canfield N L, Meinhardt K D, Sprenkle V L, Stevenson J W. Electrochem. Solid-State Lett., 2002, 5: A173-A175
[2]  Simner S, Anderson M, Bonnett J, Stevenson J. Solid State Ionics, 2004, 175: 79-81
[3]  Wang H H, Tablet C, Feldhoff A, Caro J. Adv. Mater., 2005, 17: 1785-1788
[4]  Efimov K, Halfer T, Kuhn A, Heitjans P, Caro J, Feldhoff A. Chem. Mater., 2010, 22: 1540-1544
[5]  Teraoka Y, Shimokawa H, Kang C Y, Kusaba H, Sasaki K. Solid State Ionics, 2006, 177: 2245-2248
[6]  Tao Z T, Bi L, Zhu Z W, Liu W. J. Power Sources, 2009, 194: 801-804
[7]  Liang F L, Chen J, Li J, Jiang S P, He T M, Pu J, Li J. Electrochem. Commun., 2008, 10: 42-46
[8]  Liang F L, Chen J, Chi B, Pu J, Jiang S P, Li J. J. Power Sources, 2011, 196: 153-158
[9]  邵宗平(Shao Z P), 周嵬(Zhou W), 冉然(Ran R), 高冬梅(Gao D M), 金万勤(Jin W Q). CN 200810156129.6, 2008
[10]  Sholklapper T Z, Kurokawa H, Jacobson C P, Visco S J, de Jonghe L C. Nano Lett., 2007, 7: 2136-2141
[11]  He H P, Huang Y Y, Regal J, Boaro M, Vohs J M, Gorte R J. J. Am. Ceram. Soc., 2004, 87: 331-336
[12]  Ni M, Leung D Y C, Leung M K H. J. Power Sources, 2008, 183: 133-142
[13]  Tolchard J, Grande T. J. Solid State Chemistry, 2007, 180: 2808-2815
[14]  Lin Y, Ran R, Shao Z P. Inter. J. Hydrogen Energy, 2010, 35: 8281-8288
[15]  Hibino T, Hashimoto A, Suzuki M, Sano M. J. Electrochem. Soc., 2002, 149: A1503-A1508
[16]  He F, Song D, Peng R R, Meng G Y, Yang S F. J. Power Sources, 2010, 195: 3359-3364
[17]  Ling Y H, Zhang X Z, Wang S L, Zhao L, Lin B, Liu X Q. J. Power Sources, 2010, 195: 7042-7045
[18]  韩敏芳(Han M F), 彭苏萍(Peng S P). 固体氧化物燃料电池材料及制备(Solid Oxide Fuel Cell Materials and Fabrication). 北京: 科学出版社(Beijing: Science Press), 2004. 7-14
[19]  Steele B C H, Heinzel A. Nature, 2001, 414: 345-352
[20]  Badwal S P S, Foger K. Ceram. Int., 1996, 22: 257-265
[21]  Alcaide F, Cabot P L, Brillas E. J. Power Sources, 2006, 153: 47-60
[22]  Adler S B. Chem. Rev., 2004, 104: 4791-4843
[23]  Fleig J. Annu. Rev. Mater. Res., 2003, 33: 361-382
[24]  Brandon N P, Skinner S, Steele B C H. Annu. Rev. Mater. Res., 2003, 33: 183-213
[25]  Perednis D, Gauckler L J. Solid State Ionics, 2004, 166: 229-239
[26]  Huang H, Nakamura M, Su P C, Fasching R, Saito Y, Prinz F B. J. Electrochem. Soc., 2007, 154: B20-B24
[27]  Leng Y J, Chan S H, Jiang S P, Khor K A. Solid State Ionics, 2004, 170: 9-15
[28]  Leng Y J, Chan S H, Khor K A, Jiang S P. Int. J. Hydrogen Energy, 2004, 29: 1025-1033
[29]  Kim S D, Hyun S H, Moon J, Kim J H, Song R K. J. Power Sources, 2005, 139: 67-72
[30]  Shao Z P, Dong H, Xiong G X, Gong Y, Yang W S. J. Mem. Sci., 2001, 183: 181-192
[31]  Shao Z P, Xiong G X, Tong J H, Dong H, Yang W S. Sep. Purif. Technol., 2001, 25: 419-429
[32]  Ai N, Jiang S P, Lu Z, Chen K F, Su W H. J. Electrochem. Soc., 2010, 157: B1033-B1039
[33]  Lai W, Haile S M. Phys. Chem. Chem. Phys., 2008, 10: 865-883
[34]  Lee S, Lim Y, Lee E A, Hwang H J, Moon J W. J. Power Sources, 2006, 157: 848-854
[35]  Wang L, Merkle R, Maier J. J. Electrochem. Soc., 2010, 157: B1802-B1808
[36]  Pena-Martinez J, Marrero-Lopez D, Ruiz-Morales J C, Buergler B E, Núez P, Gauckler L J. Solid State Ionics, 2006, 177: 2143-2147
[37]  Pena-Martinez J, Marrero-Lopez D, Ruiz-Morales J C, Buergler B E, Núez P, Gauckler L J. J. Power Sources, 2006, 159: 914-921
[38]  Wang L, Merkle R, Maier J, Acartürk T, Starke U. Appl. Phys. Lett., 2009, 94: art. no. 071908
[39]  Chen Z H, Ran R, Zhou W, Shao Z P, Liu S M. Electrochim. Acta, 2007, 52: 7343-7351
[40]  Pena-Martinez J, Marrero-Lopez D, Perez-Coll D, Ruiz-Morales J C, Núez P. Electrochim. Acta, 2007, 52: 2950-2958
[41]  Yan A Y, Bin L, Dong Y L, Tian Z J, Wang D Z, Cheng M J. Appl.Catal. B, 2008, 80: 24-31
[42]  Yang Z, Harvey A S, Gauckler L J. Scr. Mater., 2009, 61: 1083-1086
[43]  Duan Z S, Yang M, Yan A, Hou Z F, Dong Y L, Chong Y, Cheng M J, Yang W S. J. Power Sources, 2006, 160: 57-64
[44]  Li S, Lü Z, Ai N, Chen K F, Su W H. J. Power Sources, 2007, 165: 97-101
[45]  Wang K, Ran R, Zhou W, Gu H X, Shao Z P, Ahn J. J. Power Sources, 2008, 179: 60-68
[46]  Zhou W, Shao Z P, Ran R, Chen Z H, Zeng P Y, Gu H X, Jin W Q, Xu N P. Electrochim. Acta, 2007, 52: 6297-6303
[47]  Mineshige A, Izutsu J, Nakamura M, Nigaki K, Abe J, Kobune M, Fujii S, Yazawa T. Solid State Ionics, 2005, 176: 1145-1149
[48]  Hansen K K, Hansen K V. Solid State Ionics, 2007, 178:1379-1384
[49]  Doshi R, Richard V L J, Carter D, Wang X P, Michael K. J. Electrochem. Soc., 1999, 146: 1273-1278
[50]  Hatchwell C, Bonanos N, Mogensen M. Solid State Ionics, 2004, 167: 349-354
[51]  Sevenson J, Armstrong T, Pederson L, Li J, Lewinsohn C A, Baskaran S. Solid State Ionics, 1998, 113/115: 571-583
[52]  Zhou W, Ran R, Shao Z P, Jin W Q, Xu N P. J. Power Sources, 2008, 182: 24-31
[53]  Zhou W, Ran R, Shao Z P, Zhuang W, Jia J, Gu H X, Jin W Q, Xu N P. Acta Mater., 2008, 56: 2687-2698
[54]  Taskin A A, Lavrov A N, Ando Y. Appl. Phys. Lett., 2005, 86: art. no. 091910
[55]  Chen D J, Ran R, Shao Z P. J. Power Sources, 2010, 195: 4667-4675
[56]  Zhu C J, Liu X M, Yi C S, Pei L, Wang D J, Yan D T, Yao K G, Lü T Q, Su W H. J. Power Sources, 2010, 195: 3504-3507
[57]  Zhou Q J, Wang F, Shen Y, He T M. J. Power Sources, 2010, 195: 2174-2181
[58]  Ralph J M, Schoeler A C, Krumpelt M. J. Mater. Sci., 2001, 36: 1161-1172
[59]  Kim J H, Manthiram A. Electrochim. Acta, 2009, 54: 7551-7557
[60]  Zhao F, Wang S W, Brinkman K, Chen F L. J. Power Sources, 2010, 195: 5468-5473
[61]  Wei B, Lü Z, Jia D C, Huang X Q, Zhang Y H, Su W H. Int. J. Hydrogen Energy, 2010, 35: 3775-3782
[62]  Nian Q, Zhao L, He B B, Lin B, Peng R R, Meng G Y, Liu X Q. J. Alloys Compd., 2010, 492: 291-294
[63]  Kim J H, Cassidy M, Irvine J T S, Bae J. Chem. Mater., 2010, 22: 883-892
[64]  Ding H P, Xue X J. J. Power Sources, 2010, 195: 4139-4142
[65]  Rossignol C, Ralph J M, Bae J M, Vaughey J T. Solid State Ionics, 2004, 175: 59-61
[66]  James M, Cassidy D, Goossens D J, Withers R L. J. Solid State Chem., 2004, 177: 1886-1895
[67]  Nagai T, Ito W, Sakon T. Solid State Ionics, 2007, 177: 3433-3444
[68]  Zhou W, Shao Z P, Ran R, Cai R. Electrochem. Commun., 2008, 10: 1647-1651
[69]  Zhou W, Shao Z P, Ran R,Jin W Q, Xu N P. Chem. Commun., 2008, 44: 5791-5793
[70]  Zeng P Y, Shao Z P, Liu S M, Xu Z P. Sep. Purif. Technol., 2009, 67: 304-311
[71]  Zhou W, Jin W Q, Zhu Z H, Shao Z P. Int. J. Hydrogen Energy, 2010, 35: 1356-1366
[72]  Lin Y, Ran R, Chen D J, Shao Z P. J. Power Sources, 2010, 195: 4700-4703
[73]  Tarancon A, Burriel M, Santiso J, Skinner S J, Kilner J A. J. Mater. Chem., 2010, 20: 3799-3813
[74]  Yaremchenko A A, Kharton V V, Patrakeev M V, Frade J. J. Mater. Chem., 2003, 13: 1136-1144
[75]  Dollard W J. J. Power Sources, 1992, 37: 133-139
[76]  Minh N Q. J. Am. Ceram. Soc., 1993, 76: 563-588
[77]  Haile S M. Acta Mater., 2003, 51: 5981-6000
[78]  Singhal S C. Solid State Ionics, 2000, 135: 305-313
[79]  Yamamoto O. Electrochim. Acta, 2000, 45: 2423-2435
[80]  Holtappels P, Vogt U, Graule T. Adv. Eng. Mater., 2005, 7: 292-302
[81]  Goodenough J B. Annu. Rev. Mater. Res., 2003, 33: 91-128
[82]  Sammes N M, Du Y, Bove R. J. Power Sources, 2005, 145: 428-434
[83]  Shao Z P, Haile S M. Nature, 2004, 431: 170-173
[84]  Kim G, Wang S, Jacobson A J, Chen C L, Reimus L, Brodersen P, Mims C A. Appl. Phys. Lett., 2006, 88: art. no. 024103
[85]  Kim J H, Manthiram A. J. Electrochem. Soc., 2008, 155: B385-B390
[86]  Kim J H, Prado F, Manthiram A. J. Electrochem. Soc., 2008, 155: B1023-B1028
[87]  Shao Z P, Yang W, Cong Y, Dong H, Tong J H, Xiong G X. J. Mem. Sci., 2000, 172: 177-188
[88]  Shao Z P, Xiong G X, Dong H, Yang W S, Lin L W. Sep. Purif. Technol., 2001, 25: 97-116
[89]  Zeng P Y, Chen Z H, Zhou W, Gu H X, Shao Z P, Liu S M. J. Mem. Sci., 2007, 291: 148-156
[90]  Magnone E. J. Fuel Cell Sci. Tech., 2010, 7: art. no. 064001
[91]  Leo A, Liu S M, da Costa J C D. Int. J. Greenhouse Gas Control, 2009, 3: 357-367
[92]  Baumann S, Schulze-Kuppers F, Roitsch S, Betz M, Zwick M, Pfaff E M, Meulenberg W A, Mayer J, Stver D. J. Mem. Sci., 2010, 359: 102-109
[93]  Baumann F S, Fleig J, Habermeier H U, Maier J. Solid State Ionics, 2006, 177: 3187-3191
[94]  Bucher E, Egger A, Ried P, Sitte W, Holtappels P. Solid State Ionics, 2008, 179: 1032-1035
[95]  Liu Q L, Khor K A, Chan S H. J. Power Sources, 2006, 161: 123-128
[96]  McIntosh S, Vente J F, Haije W G, Blank D H A, Bouwmeester H J M. Solid State Ionics, 2006, 177: 1737-1742
[97]  Ovenstone J, Jung J I, White J S, Edwards D D, Misture S T. J. Solid State Chem., 2008, 181: 576-586
[98]  Martynczuk J, Arnold M, Wang H, Caro J, Feldhoff A. Adv. Mater., 2007, 19: 2134-2140
[99]  McIntosh S, Vente J F, Haije W G, Blank D H A, Bouwmeester H J M. Chem. Mater., 2006, 18: 2187-2193
[100]  Jung J I, Misture S T, Edwards D D. J. Electroceramics, 2010, 24: 261-269
[101]  Lim Y H, Lee J, Yoon J S, Kim C E, Hwang H J. J. Power Sources, 2007, 171: 79-85
[102]  Lin Y, Ran R, Zheng Y, Shao Z P, Jin W Q, Xu N P, Ahn J. J. Power Sources, 2008, 180: 15-22
[103]  Zhang C M, Zheng Y, Ran R, Shao Z P, Jin W Q, Xu N P, Ahn J. J. Power Sources, 2008, 179: 640-648
[104]  Zhou W, Shao Z P, Ran R, Zeng P Y, Gu H X, Jin W Q, Xu N P. J. Power Sources, 2007, 168: 330-337
[105]  Kostogloudis G C, Ftikos C. Solid State Ionics, 1999, 126: 143-151
[106]  Ge L, Zhou W, Ran R, Liu S M, Shao Z P, Jin W Q, Xu N P. J. Mem. Sci., 2007, 306: 318-328
[107]  Ge L, Ran R, Zhang K, Liu S M, Shao Z P. J. Mem. Sci., 2008, 318: 182-190
[108]  Zhou W, Ran R, Shao Z P. J. Power Sources, 2009, 192: 231-246
[109]  Jacobson A J. Chem. Mater., 2010, 22: 660-674
[110]  Zhang K, Ge L, Ran R, Shao Z P, Liu S M. Acta Mater., 2008, 56: 4876-4889
[111]  Chen D J, Ran R, Shao Z P. J. Power Sources, 2010, 195: 7187-7195
[112]  Tarancon A, Pena-Martinez J, Marrero-Lopez D, Morata A, Ruiz-Morales J C, Núez P. Solid State Ionics, 2008, 179: 2372-2378
[113]  Zhou Q J, He T M, He Q, Ji Y. Electrochem. Commun., 2009, 11: 80-83
[114]  Kim J H, Cassidy M, Irvine J T S, Bae J. J. Electrochem. Soc., 2009, 156: B682-B689
[115]  Orera A, Slater P R. Chem. Mater., 2010, 22: 675-690
[116]  Zhou Q J, Zhang Y C, Shen Y, He T M. J. Electrochem. Soc., 2010, 157: B628-B632
[117]  Skinner S J. Int. J. Inorg. Mater., 2001, 3: 113-121
[118]  Lee T H, Yang Y L, Jacobson A J, Abeles B, Milner S. Solid State Ionics, 1997, 100: 87-94
[119]  Sunarso J, Motuzas J, Liu S M, da Costa J C D. J. Membr. Sci. 2010, 361: 120-125
[120]  Zhang K, Ran R, Shao Z P, Zhu Z H, Jin Y G, Liu S M. Ceram. Int., 2010, 36: 635-641
[121]  Zeng P Y, Ran R, Chen Z H, Zhou W, Gu H X, Shao Z P, Liu S M. J. Alloys Compd., 2008, 455: 465-470
[122]  Huang C, Chen D J, Lin Y, Ran R, Shao Z P. J. Power Sources, 2010, 195: 5176-5184
[123]  Zhao F, Wang X F, Wang Z Y, Peng R R, Xia C R. Solid State Ionics, 2008, 179: 1450-1453
[124]  Aguadero A, Alonso J A, Esudero M J, Daza L. Solid State Ionics, 2008, 179: 393-400
[125]  Tsipis E V, Naumovich E N, Shaula A L, Patrakeev M V, Waerenborgh J C, Kharton V V. Solid State Ionics, 2007, 179: 57-60
[126]  Mauvy F, Lalanne C, Bassat J M, Grenier J C, Zhao H, Huo L, Stevens P. J. Electrochem. Soc., 2006, 153: A1547-A1553
[127]  Coffey G W, Hardy J, Pedersen L R, Rieke P, Thomsen E, Walpole M. Solid State Ionics, 2003, 158: 1-9
[128]  Coffey G W, Hardy J, Pedersen L R, Rieke P, Thomsen E. Electrochem. Solid-State Lett., 2003, 6: A121-A124
[129]  Tsipis E V, Kharton V V. J. Solid State Electrochem., 2008, 12: 1039-1060
[130]  Bebelis S, Kournoutis V, Mai A, Tietz F. Solid State Ionics, 2008, 179: 1080-1084
[131]  Wei B, Lu Z, Huang X Q, Liu M L, Li N, Su W H. J. Power Sources, 2008, 176: 1-8
[132]  Liang F L, Chen J, Jiang S P, Chi B, Pu J, Li J. Electrochem. Solid-State Lett., 2008, 11: B213-B216
[133]  Liang F L, Chen J, Jiang S P, Wang F Z, Chi B, Pu J, Li J. Fuel Cells, 2009, 9: 636-642
[134]  Chen J, Liang F L, Chi B, Pu J, Jiang S P, Li J. J. Power Sources, 2009, 194: 275-280
[135]  Liang F L, Chen J, Jiang S P, Chi B, Pu J, Li J. Electrochem. Commun., 2009, 11: 1048-1051
[136]  梁凤丽(Liang F L). 华中科技大学博士学位论文(Doctoral Dissertation of Huazhong University of Science & Technology), 2009
[137]  Zhou W, Ran R, Shao Z P, Cai R, Jin W Q, Xu N P, Ahn J. Electrochim. Acta, 2008, 53: 4370-4380
[138]  Zhou W, Ran R, Cai R, Shao Z P, Jin W Q, Xu N P. J. Power Sources, 2009, 186: 244-251
[139]  Armstrong T J, Rich J G. J. Electrochem. Soc., 2006, 153: A515-A520
[140]  Huang Y, Vohs J M, Gorte R J. Electrochem. Solid-State Lett., 2006, 9: A237-A240
[141]  Jiang S P. Mat. Sci. Eng. A, 2006, 418: 199-210
[142]  Vohs J M, Gorte R J. Adv. Mater., 2009, 21: 943-956
[143]  Jiang Z Y, Xia C R, Chen F L. Electrochim. Acta, 2010, 55: 3595-3605
[144]  Kreuer K D. Annu. Rev. Mater. Res., 2003, 33: 333-359
[145]  Lin Y, Ran R, Zhang C M, Cai R, Shao Z P. J. Phys. Chem. A, 2010, 114: 3764-3772
[146]  Yang L, Zuo C D, Wang S Z, Cheng Z, Liu M L. Adv. Mater., 2008, 20: 3280-3283
[147]  Ding H P, Lin B, Liu X Q, Meng G Y. Electrochem. Commun., 2008, 10: 1388-1391
[148]  Ding H P, Xue X J. J. Power Sources, 2010, 195: 7038-7041

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