全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
化学进展  2013 

锂硫电池最新研究进展

DOI: 10.7536/PC130402, PP. 1830-1841

Keywords: 锂硫电池,硫基复合正极,电解质,锂负极,循环寿命

Full-Text   Cite this paper   Add to My Lib

Abstract:

锂硫电池的理论能量密度为2600Wh/kg,是锂离子二次电池的3—5倍,是极具应用前景的电化学储能体系,近年来引起了研究人员的广泛关注。人们在维持电极结构稳定性、提高硫的利用率和加强电池循环寿命等方面开展了大量的研究工作。本文综述了锂硫电池的最新研究进展,从硫正极材料复合改性、不同种类电解质、锂负极保护、电池结构设计等4个方面进行了总结,分析了影响锂硫电池比容量、循环稳定性的主要因素,最后展望了锂硫电池未来的发展趋势。

References

[1]  Shukla A K, Kumar T P. Current Science, 2008, 94: 314—331
[2]  Ma H, Cheng F Y, Chen J, Zhao J Z, Li C S, Tao Z L, Liang J. Adv. Mater., 2007, 19: 4067—4070
[3]  Zou M J, Yoshio M, Gopukumar S, Yamaki J. Chem. Mater., 2005, 17: 1284—1286
[4]  Ahn W, Kim K B, Jung K N, Shin K H, Jin C S. Journal of Power Sources, 2012, 202: 394— 399
[5]  赖超(Lai C), 李国春(Li G C), 叶世海(Ye S H), 高学平(Gao X P). 化学进展(Progress in Chemistry), 2011, 23: 527—532
[6]  董全峰(Dong Q F), 王翀(Wang C), 郑明森(Zheng M S). 化学进展(Progress in Chemistry), 2011, 23: 533—539
[7]  Diao Y, Xie K, Xiong S Z, Hong X B. Journal of The Electrochemical Society, 2012, 159: 421—425
[8]  Ryua H S, Guo Z P, Ahn H J, Cho G B, Liu H K. Journal of Power Sources, 2009, 189: 1179—1183
[9]  Herbert D, Ulam J. US3043896, 1962
[10]  黄震雷(Hang Z L), 应皆荣(Ying J R), 孙莞柠(Sun W N), 姜长印(Jiang C Y), 万春荣(Wan C R). 稀有金属材料与工程(Rare Metal Materials and Engineering), 2010, 39: 182—188
[11]  Wang J, Chew S Y, Wexler D, Wang G X, Ng S H, Zhong S, Liu H K. Electrochemistry Communications, 2007, 9: 1877—1880
[12]  Han S C, Kim K W, Ahn H J, Ahn J H, Lee J Y. Journal of Alloys and Compounds, 2003, 361: 247—251
[13]  Yufit V, Freedman K, Nathan M, Burstein L, Golodnitsky D, Peled E. Electrochimica Acta, 2004, 50: 417—420
[14]  Momma T, Shiraishi N, Yoshizawa A, Osaka T, Gedanken A, Zhu J, Sominski L. Journal of Power Sources, 2001, 97/98: 198—200
[15]  Gómez-Cámer J L, Martin F, Morales J, Sánchez L. J. Electrochem. Soc., 2008, 155: A189—A195
[16]  Wang J Z, Wang G X, Yang L, Ng S H, Liu H K. J. Solid State Electrochem, 2006, 10(4): 250—254
[17]  Feng C Q, Ma J, Li H, Zeng R, Guo Z P, Liu H K. Materials Research Bulletin, 2009, 44: 1811—1815
[18]  Feng C Q, Huang L F, Guo Z P, Liu H K. Electrochemistry Communications, 2007, 9: 119—122
[19]  刘波涛(Liu B T), 翁国明 (Weng G M), 苏育志(Su Y Z). 材料导报: 综述篇(Materials Review), 2009, 23: 114—118
[20]  Mishra S P, Krishnamoorthy K, Sahoo R, Kumar A. J. Mater. Chem., 2006, 16: 3297—3304
[21]  Su Y Z, Niu Y P, Xiao Y Z, Xiao M, Liang Z X, Gong K C. Journal of Polymer Science Part A: Polymer Chemistry, 2004, 42: 2329—2339
[22]  Su Y Z, Dong W, Zhang J H, Song J H, Zhang Y H, Gong K C. Polymer, 2007, 48: 165—173
[23]  Zhang S C, Zhang L, Wang W K, Xue W J. Synthetic Metals, 2010, 160: 2041—2044
[24]  Zhang S C, Zhang L, Yu J H. Journal of Power Sources, 2011, 196: 10263— 10266
[25]  Zhang Y, Wu X B, Feng H, Wang L Z, Zhang A Q, Xia T C, Dong H C. International Journal of Hydrogen Energy, 2009, 34: 1556—1559
[26]  Song M S, Han S C, Kim H S, Kim J H, Kim K T, Kang Y M, Ahn H J, Dou S X, Lee J Y. Journal of the Electrochemical Society, 2004, 151: A791—A795
[27]  Seh Z W, Li W Y, Cha J J, Zheng G Y, Yang Y, McDowell M T, Hsu P C, Cui Y. Nature Communications, 2013, 4: art. no. 1331. DOI: 10.1038/ncomms2327
[28]  Ji X L, Nazar L F. J. Mater. Chem., 2010, 20: 9821—9826
[29]  Peled E, Gorenshtein A, Segal M, Sternberg Y. J. Power Sources, 1989, 26: 269—271
[30]  Wang J L, Liu L, Ling Z J, Yang J, Wan C R, Jiang C Y. Electrochimica Acta, 2003, 48: 1861—1867
[31]  Guo J C, Xu Y H, Wang C S. Nano Letters, 2011, 11: 4288—4294
[32]  Song M K, Cairns E J, Zhang Y G. Nanoscale, 2013, 5: 2186—2204
[33]  Schuster J, He G, Mandlmeier B, Yim T, Lee K T, Bein T, Nazar L F. Angew. Chem. Int. Ed., 2012, 51: 3591 —3595
[34]  Ji X L, Lee K T, Nazar L F. Nature Materials, 2009, 8: 500—506
[35]  Wang D W, Zhou G M, Li F, Wu K H, Lu G Q (Max), Cheng H M, Gentle I R. Phys. Chem. Chem. Phys., 2012, 14: 8703—8710
[36]  Xi K, Cao S, Peng X Y, Ducati C, Kumar R V, Cheetham A K. Chem. Commun., 2013, 49: 2192—2194
[37]  Xin S, Gu L, Zhao N H, Yin Y X, Zhou L J, Guo Y G, Wan L J. J. Am. Chem. Soc., 2012, 134: 18510—18513
[38]  Xin S, Yin Y X, Wan L J, Guo Y G. Part. Part. Syst. Charact., 2013, 30: 321—325
[39]  Park M S, Yu J S, Kim K J, Jeong G J, Kim J H, Jo Y N, Hwang U K, Kang S, Woo T, Kim Y J. Phys. Chem. Chem. Phys., 2012, 14: 6796—6804
[40]  Cao Y L, Li X L, Aksay I A, Lemmon J, Nie Z, Yanga Z G, Liu J. Phys. Chem. Chem. Phys., 2011, 13: 7660—7665
[41]  Pu W H, He X M, Wang L, Tian Z, Jiang C Y, Wan C R. Ionics, 2007, 13: 273—276
[42]  He X M, Pu W H. Ren J G, Wang L, Wang J L, Jiang C Y, Wan C R. Ionics, 2008, 14: 335—337
[43]  Zhang Y G, Zhao Y, Yermukhambetova A, Bakenov Z, Chen P. J. Mater. Chem. A, 2013, 1: 295—301
[44]  Wang J, Chen J, Konstantinov K, Zhao L, Ng S H, Wang G. X, Guo Z P, Liu H K. Electrochimica Acta, 2006, 51: 4634—4638
[45]  Sun M, Zhang S C, Jiang T, Zhang L, Yu J H. Electrochemistry Communications, 2008, 10: 1819—1822
[46]  Qiu L L, Zhang S C, Zhang L, Sun M M, Wang W K. Electrochimica Acta, 2010, 55: 4632—4636
[47]  Kim S, Jung Y J, Lim H S. Electrochimica Acta, 2004, 50: 889—892
[48]  Jeddi K, Ghaznavi M, Chen P. J. Mater. Chem. A, 2013, 1: 2769—2772
[49]  Srour H, Rouault H, Santini C. Journal of The Electrochemical Society, 2013, 160: A66—A69
[50]  Yuan L X, Feng J K, Ai X P, Cao Y L, Chen S L, Yang H X. Electrochemistry Communications, 2006, 8: 610—614
[51]  Sun X G, Wang X Q, Mayes R T, Dai S. ChemSusChem, 2012, 5: 2079—2085
[52]  Shin J H, Cairns E J. Journal of Power Sources, 2008, 177: 537—545
[53]  Zhang S S. Journal of Power Sources, 2013, 231: 153—162
[54]  Wang X J, Hou Y Y, Zhu Y S, Wu Y P, Holze R. Scientific Reports, 2013, 4: art. no. 1401. DOI: 10.1038/srep01401
[55]  Zhang S S. Electrochimica Acta, 2012, 70: 344— 348
[56]  Xiong S Z, Kai X, Hong X B, Diao Y. Ionics, 2012, 18: 249—254
[57]  Lin Z, Liu Z, Fu W J, Dudney N J, Liang C D. Adv. Funct. Mater., 2013, 23: 1064—1069
[58]  Nimon Y S, Chu M Y, Visco S J. US 6537701, 2003
[59]  Marom R, Amalraj S F, Leifer N, Jacob D, Aurbach D. J. Mater. Chem., 2011, 21: 9938—9954
[60]  Manthiram A, Fu Y Z, Su Y S. Accounts Chem. Res., 2012, doi: 10.1021/ar300179v
[61]  李存璞(Li C P), 王要武(Wang Y W), 谢晓峰(Xie X F), 邓长生(Deng C S), 尚玉明(Shang Y M), 杨裕生(Yang Y S). 化工学报(CIESC Journal), 2011, 62: 13—18
[62]  Yi T F, Li X Y, Liu H P, Shu J, Zhu Y R, Zhu R S. Ionics, 2012, 18: 529—539
[63]  郝冠男(Hao G N), 张浩(Zhang H), 陈晓红(Chen X H), 曹高萍(Cao G P), 宋怀河(Song H H). 材料导报A: 综述篇(Materials Review), 2011, 25: 136—139
[64]  郝冠男(Hao G N), 张浩(Zhang H), 陈晓红(Chen X H), 曹高萍(Cao G P). 电池(Battery), 2011, 41: 177—180
[65]  Li K F, Wang B, Su D W, Park J, Ahn H, Wang G X. Journal of Power Sources, 2012, 202: 389— 393
[66]  Barchasz C, Leprêtre J C, Alloin F, Patoux S. Journal of Power Sources., 2012, 199: 322— 330
[67]  Rao M L B. US 3413154, 1968
[68]  Nole D, Moss V. US 3532543, 1970
[69]  Song M K, Park S, Alamgir F M, Cho J, Liu M. Materials Science and Engineering R: Reports, 2011, 72: 203—252
[70]  胡宗倩(Hu Z Q), 谢凯(Xie K). 材料导报A: 综述篇(Materials Review), 2011, 25: 46—50
[71]  Bruce P G., Freunberger S A, Hardwick L J, Tarascon J M. Nature Materials, 2012, 11: 19—29
[72]  Dusheiko V A, Lipkin M S. Journal of Power Sources, 1995, 54: 264—267
[73]  Wang J Z, Chou S L, Chew S Y, Sun J Z, Forsyth M, MacFarlane D R, Liu H K. Solid State Ionics, 2008, 179: 2379—2382
[74]  Choi Y J, Jung B S, Lee D J, Jeong J H, Kim K W, Ahn H J, Cho K K, Gu H B. Phys. Scr., 2007, 129: 62—65
[75]  Geng X Y, Rao M, Li X P, Li W S. J. Solid State Electrochem., 2013, 17: 987—992
[76]  Liang X, Wen Z Y, Liu Y, Zhang H, Jin J, Wu M F, Wu X W. Journal of Power Sources, 2012, 206: 409— 413
[77]  Wang C, Wan W, Chen J T, Zhou H H, Zhang X X, Yuan L X, Huang Y H. J. Mater. Chem. A, 2013, 1: 1716—1723
[78]  Rao M, Song X Y, Cairns E J. Journal of Power Sources, 2012, 205: 474— 478
[79]  Ji L W, Rao M, Aloni S, Wang L, Cairns E J, Zhang Y G. Energy Environ. Sci., 2011, 4: 5053—5059
[80]  Zheng G Y, Zhang Q F, Cha J J, Yang Y, Li W Y, She Z W, Cui Y. Nano Lett., 2013, 13: 1265—1270
[81]  Novoselov K S, Geim A K, Morozov S V, Jiang D, Zhang Y, Dubonos S V, Grigorieva I V, Firsov A A. Science, 2004, 306: 666—669
[82]  Yin L C, Wang J L, Lin F J, Yang J, Nuli Y. Energy Environ. Sci., 2012, 5: 6966—6972
[83]  Wang J L, Yang J, Wan C R, Du K, Xie J Y, Xu N X. Adv. Funct. Mater., 2003, 13: 487—492
[84]  Wang J L, Yang J, Xie J Y, Xu N X. Adv. Mater., 2002, 14: 963—965
[85]  Xiao L F, Cao Y L, Xiao J, Schwenzer B, Engelhard M H, Saraf L V, Nie Z, Exarhos G J, Liu J. Adv. Mater., 2012, 24: 1176—1181
[86]  Tao X Y, Chen F, Xia Y, Huang H, Gan Y P, Chen X R, Zhang W K. Chem. Commun., 2013, 49: 4513—4515
[87]  Guo B K, Ben T, Bi Z H, Veith G M, Sun X G, Qiu S L, Dai S. Chem. Commun., 2013, 49: 4905—4907
[88]  Gao J, Lowe M A, Kiya Y, Abruna H D. J. Phys. Chem. C, 2011, 115: 25132—25137
[89]  Chen S R, Dai F, Gordin M L, Wang D H. RSC Adv., 2013, 3: 3540—3543
[90]  Suo L M, Hu Y S, Li H, Armand M, Chen L Q. Nature Communications, 2013, 4: art. no. 1481. DOI: 10.1038/ncomms2513
[91]  Chazalviel J N. Phys. Rev. A. 1990, 42: 7355—7367
[92]  Rosso M. Electrochim. Acta, 2007, 53: 250—256
[93]  苑克国(Yuan K G), 王维坤(Wang W K), 余仲宝(Yu Z B), 王安邦(Wang A B). 电源技术(Chinese Journal of Power Sources). 2010, 134: 206—206
[94]  Jeong S S, Lim Y T, Choi Y J, Cho G B, Kim K W, Ahn H J, Cho K K. Journal of Power Sources, 2007, 174: 745—750
[95]  Shin J H, Kim K W, Ahn H J, Ahn J H. Materials Science and Engineering, 2002, 95: 148—156
[96]  Hayashi A, Ohtomo T, Mizuno F, Tadanaga K, Tatsumisago M. Electrochemistry Communications, 2003, 5: 701—705
[97]  Nagao M, Imade Y, Narisawa H, Kobayashi T, Watanabe R, Yokoi T, Tatsumi T, Kanno R. Journal of Power Sources, 2013, 222: 237—242
[98]  Wang J L, Wang Y W, He X M, Ren J G, Jiang C Y, Wan C R. Journal of Power Sources, 2004, 138: 271—273
[99]  Madria N, Arunkumar T A, Nair N G, Vadapalli A, Huang Y W, Jones S C, Reddy V P. Journal of Power Sources, 2013, 234: 277—284
[100]  Yun Y S, Choi J A, Kim D W. Macromolecular Research, 2013, 21: 49—54
[101]  王维坤(Wang W K), 余仲宝(Yu Z B), 苑克国(Yuan K G), 王安邦(Wang A B), 杨裕生(Yang Y S). 化学进展(Progress in Chemistry), 2011, 23: 540—547
[102]  Lee Y M, Choi N S, Park J H, Park J K. Journal of Power Sources, 2003, 119/121: 964—972
[103]  Zheng M S, Chen J J, Dong Q F. Adv. Mater. Res., 2012, 476/478: 676—680
[104]  Nimon Y S, Chu M Y, Visco S J, US 6632573, 2003
[105]  Su Y S, Manthiram A. Nature Communications, 2012, 3: art. no. 1166. DOI: 10.1038/ncomms2163
[106]  Su Y S, Manthiram A. Chem. Commun., 2012, 48: 8817—8819

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133