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Progress in Chemistry 2008, Vol. 20 Issue (0708): 1202-1207 Previous Articles   Next Articles

• Review •

Template Synthesis of Mesoporous Carbon Materials

Li Na; Wang Xianyou**; Yi Siyong; Dai Chunling

  

  1. (School of Chemistry and Chemical Engineering, Xiangtan University,
    Hunan, Xiangtan 411105, China)
  • Received: Revised: Online: Published:
  • Contact: Wang Xianyou
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Template method provides a new technology for synthetizing controllable and directional various mesoporous carbon materials; it has currently become one of the most popular topics in the advanced materials preparation at home and abroad. Due to their uniform and ordered pores, narrow pore size distribution and high specific surface area, mesoporous carbon materials had been widely used in gas separation, catalyst support, adsorption, chromatographic analysis, supercapacitors and fuel cells, etc. Based on the recent research progress of the template synthesis technology of mesoporous carbon, we discuss the effect of different template preparation technology on the performance of mesoporous carbon, analyze mesoporous carbon’s formation mechanism and its application in biology, catalysis, electronic energy resource areas. It is pointed that preparing mesoporous carbon by template technology is a promising method, and in the future the mesoporous molecular sieve template method and soft template method should be emphasized for template synthesis of mesoporous carbon materials.

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[ 1 ] Patrick J W. Porosity in Carbons : Characterization and Applications. London : Edward Arnold , 1995
[ 2 ] 邢宝林(Xing B L) , 张传祥(Zhang C X) , 段玉玲(Duan Y L)等. 材料导报(Materials Review) , 2007 , 5(21) : 417 —420
[ 3 ] Han SJ , Hyeon T. Chem. Commun. , 1999 , (19) : 1955 —1956
[ 4 ] Kawashima D , Aihara T , Kobayashi Y, et al . Chem. Mater. ,2000 , 12 : 3397 —3401
[ 5 ] Han S , Hyeon T. Carbon , 1999 , 37 : 1645 —1647
[ 6 ] Lee J , Sohn K, Hyeon T. J . Am. Chem. Soc. , 2001 , 123 :5146 —5147
[ 7 ] Sung U J , Yoon S B , Chai G E. Carbon , 2001 , 39 : 1421 —1446
[ 8 ] Wayne W, Stucky G D. Chem. Mater. , 2002 , 14 : 1665 —1670
[ 9 ] Ryoo R , Joo S H , Jun S. Phys. Chem. B , 1999 , 103 : 7743 —7746
[10] Beck J S , Vartuli J C , Roth W J , et al . J . Am. Chem. Soc. ,1992 , 114 : 10834 —10843
[11] Huo Q S , David I M, Ulrike C , et al . Chem. Mater. , 1994 , 6(8) : 1176 —1191
[12] Schuth F , Huo Q , Voigt Martin I G, et al . Science , 1996 , 273(5276) : 768 —771
[13] Huo Q , Maxgolese D I , Clesia U , et al . Nature , 1994 , 368 (3) :317 —321
[14] Inagaki S , Fukushima Y, Kuroda K. Chem. Commun. , 1993 , 8(7) : 680 —682
[15] 宋怀河(Song H H) , 李丽霞(Li L X) , 陈晓红(Chen X H) .新型炭材料(New Carbon Materials) , 2006 , 21(4) : 374 —383
[16] 杜丽(Du L) , 刘军民(Liu J M) , 杨旭(Yang X) 等. 化工进展(Chemical Industry and Engineering Progress) , 2007 , 26 (6) :779 —781
[17] Schumacher K, Ravikovitch P I , Chesne A D , et al . Langmuir ,2000 , 16 (10) : 4648 —4654
[18] 王冬林(Wang D L) , 李青(Li Q) , 曾昌凤(Zen C F) 等. 南京工业大学学报(Journal of Nanjing University of Technology) ,2006 , 28 (1) : 89 —92
[19] Ryoo R , Joo S H , Jun S. J . Phy. Chem. B , 1999 , 13 : 7743 —7746
[20] Kaneda M, Tsubakiyama T , Carlsson A , et al . J . Phys. Chem.B , 2002 , 106 : 1256 —1266
[21] Yoon S B , Kim J Y, Yu J S. Chem. Commun. , 2001 , (6) :559 —560
[22] 伍刚(Wu G) . 大连理工大学硕士论文(MS Dissertation of Dalian University of Technology) , 2005
[23] 陈逢喜(Cheng F X) , 黄茜丹(Huang Q D) , 李全芝(Li Q Z) .科学通报(Chinese Science Bulletin) , 1999 , 4 (18) : 1905 —1920
[24] Kloetstra K R , Bekkum H V , Jansen J C. J . Chem. Soc. Chem.Commun. , 1997 , 2281 —2282
[25] Tian B Z , Terasaki O , Zhao D Y. Chem. Commun. , 2003 ,2726 —2727
[26] Ryoo R , Joo S H , Kruk M, et a1. Adv. Mater. , 2001 , 13 :677 —681
[27] 翟庆洲(Zhai Q Z) , 蔡建岩(Cai J Y) , 于辉(Yu H) 等. 硅酸盐学报(Journal of the Chinese Ceramic Society) , 2006 , 34 (3) :385 —388
[28] Vinu A , Srinivasu P , Takahashi M. Microporous and Mesoporous Materials , 2007 , 100 : 20 —26
[29] Lu A , Kiefer A , Schüth F , et al . Chem. Mater. , 2004 , 16 :100 —103
[30] 吴淑杰(Wu S J) , 黄家辉(Huang J H) , 吴通好(Wu T H) 等.催化学报(Chinese Journal of Catalysis) , 2006 , 27(1) : 9 —14
[31] 李红芳(Li H F) , 席红安(Xi H A) , 杨学林(Yang X L) . 无机化学学报(Chinese Journal of Inorganic Chemistry) , 2006 , 4 :714 —718
[32] Joo S H , Choi S J , Oh I , et al . Nature , 2001 , 412 : 169 —172
[33] Zhang W H , Liang C , Sun H , et al . Adv. Mater. , 2002 , 14 :1776 —1778
[34] Kim S S , Pauly T R , Pinnavaia T J . Chem. Commun. , 2000 ,1661 —1662
[35] Kim S S , Pinnavaia TJ . Chem. Commun. , 2001 , (23) : 2418 —2419
[36] Lee J , Sohn K, Hyeon T. Chem. Commun. , 2002 , 2674 —2675
[37] Lee J , Yoon S S , Oh M, et al . Adv. Mater. , 2000 , 12 : 359 —362
[38] Meng Y, Gu D , Zhang F Q , et al . Angew. Chem. Int . Ed. ,2005 , 44 : 7053 —7059
[39] Lee J W, Kim J Y, Hyeon T W. Porous Carbon Materials , 2006 ,18 : 2073 —2094
[40] Yoon S B , Kim J Y, Yu J S. Chem. Commun. , 2002 , (14) :1536 —1537
[41] KimJ Y, Lee J W, Hyeon T W. Carbon , 2004 , 42(12) : 2711 —2719
[42] Wan Y, Zhao D Y. Chemical Reviews , 2007 , 107 (7) : 2821 —2860
[43] Choma J , Gorka J , Jaroniec M. Microporous and Mesoporous Materials , 2008 , 112 : 573 —579
[44] Li H Q , Liu R L , Zhao D Y, et al . Carbon , 2007 , 45 : 2628 —2635
[45] Fan J , Wang T , Yu C Z , et al . Adv. Mater. , 2004 , 16 : 3323 —3330
[46] 栾广贵(Luan G G) , 刘振辉(Liu Z H) , 荣海琴(Rong H Q) .炭素技术(Carbon Techniques) , 2006 , 25(1) : 10 —14
[47] Zhao J W, Gao F , Fu Y L , et al . Chem. Commun. , 2002 ,752 —753
[48] Yan X X, Deng H X, Huang X H. J . Non-Cryst . Solids , 2005 ,351 : 3209 —3217
[49] Armandi M, Bonelli B , Bottero I. Microporous and Mesoporous Materials , 2007 , 103 : 150 —157
[50] 党王娟(Dang W J) , 何建平(He J P) , 周建华(Zhou J H) . 物理化学学报(Acta Physico-Chimica Sinica ) , 2007 , 23 ( 7) :1085 —1089

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