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Progress in Chemistry 2003, Vol. 15 Issue (06): 451- Previous Articles   Next Articles

• Review •

Fabrication and Assembling of Nanomaterials Templated by Lyotropic Liquid Crystal

Zhao Jikuan;Chen Xiao**;Sui Zhenming;Zhu Baolin;Xu Limei;Yang Chunjie   

  1. (Key Lab for Colloid and Interface Chemistry of State Education Ministry, Shandong University, Jinan 250100, China)
  • Received: Revised: Online: Published:
  • Contact: Chen Xiao
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The methods of preparing nanomaterials templated by lyotropic liquid crystal are reviewed in this paper. The general aspects of constructing hybrids with the templates as scaffolds and the nanoparticles as building blocks are described in detail. Future research directions of this field are also anticipated.

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[ 1 ] Simon U , FrankeM E. Microporousand Mesoporous Materials, 2000, 41 (1/3) : 1—36
[ 2 ] Wang Z L , Gao R P, Poncharal P, et al. Materials Science and Engineering C, 2001, 16 (1/2 ) : 3—10
[ 3 ] Sebastian P J. Solar Energy Materials & Solar Cells,2001, 70 (3) : 243—244
[ 4 ] Cain M , Morrell R. App l. O rganometal. Chem. , 2001,15 (5) : 321—330
[ 5 ] Smith S S. N ano L ett. , 2001, 1 (2) : 51—56
[ 6 ] Antonietti M. Current Opinion in Colloid & Interface Science, 2001, 6 (3) : 244—248
[ 7 ] Davis S A , Breulmann M , Rhodes K H, et al. Chem. Mater. , 2001, 13 (10) : 3218—3226
[ 8 ] Simon U , Franke M E. Microporous and Mesoporous Materials, 2000, 41 (1/3) : 1—36
[ 9 ] Zhou Y K, Huang J , Shen C M , et al. M aterials Science and Engineering A , 2002, 335 (1/2) : 260—267
[ 10 ] Gao F, L u Q Y, L iu X Y, et al. N ano L ett. , 2001, 1(12) : 743—748
[ 11 ] Ravaine S, Fanucci G E, Seip C T, et al. Langmuir,1998, 14: 708—713
[ 12 ] Khomutov G B, Bykov IV , Gainutidinov R V , et al. Colloids and Surfaces A , 2002, 198/200: 347—358
[ 13 ] Khomutov G B, Gubin S P, Khanim V V , et al. Colloids and Surfaces A , 2002, 198/200: 593—604
[ 14 ] Bague R P, Khilar K C. L angmuir, 2000, 16: 905—910
[ 15 ] Casom J P, Roberts C B. J. Phys. Chem. B, 2000, 104(6) : 1217—1221
[ 16 ] Jiang X C, Xie Y, L u J , et al. J. M ater. Chem. , 2001,11 (7) : 1775—1777
[ 17 ] Coleman N R B, Attard G S. Micropo rous and Mesoporous Materials, 2001, 44/45: 73—80
[ 18 ] Attard G S, Edgar M , Goltner C G. Acta Mater. , 1998,46 (3) : 751—758
[ 19 ] Mertig M , Kirsch R, Pompe W , et al. Eur. Phys. J. D,1999, 9: 45—48
[ 20 ] N iemeyer C M. A ngew. Chem. Int. Ed. , 2001, 40:4128—4158
[ 21 ] 邰子厚(Tai Z H) , 梁映秋(Liang Y Q ). 大学化学(Unversity Chemistry) , 1997, 12 (3) : 1—6
[ 22 ] 王良御(Wang L Y) , 廖松生(Liao S S). 液晶化学(Liquid Crystal Chemsitry). 北京(Beijing) : 科学出版社(Science Press) , 1988. 138—149
[ 23 ] 李彦(L i Y) , 张庆敏(Zhang Q M ) , 黄福志(Huang F Z)等. 大学化学(Unversity Chemistry) , 2000, 15 (1) : 5—9
[ 24 ] Gulik-Krzyw ick i T, Dedieu J C, Roux D, et al. L angmuir, 1996, 12 (20) : 4668—4671
[ 25 ] Lin Z, Davis H T, Scriven L E. Langmuir, 1996, 12 (22) :5489—5493
[ 26 ] Ponsinet V , Talmon Y. Langmuir, 1997, 13 (26) : 7287—7292
[ 27 ] Beck J S, V artuli J C, Roth W J , et al. J. Am. Chem.Soc. , 1992, 114 (27) : 10834—10843
[ 28 ] Holland B T, Isbester P K, Blandfo rd C G, et al. J. Am.Chem. Soc. , 1997, 119 (29) : 6796—6803
[ 29 ] Jiang X C, Xie Y, L u J , et al. Chem. M ater. , 2001, 13(4) : 1213—1218
[ 30 ] Li Y, Wan J H, Gu Z N. Acta. Physico-Chimica Sinica,1999, 15 (1) : 1—4
[ 31 ] Guo R, L iu T Q. Colloids and Surfaces A , 1997, 123/124: 587—591
[ 32 ] Braun P V , Stupp S I. M aterials Research Bulletin, 1999,34 (3) : 463—469
[ 33 ] Braun P V , O senar P, Tohver V , et al. J. Am. Chem.Soc. , 1999, 121 (32) : 7302—7309
[ 34 ] Huang L M , W ang H T, W ang Z B, et al. A dv. M ater. ,2002, 14 (1) : 61—64
[ 35 ] A ttard G S, Bartlett P N , Co leman N R B, et al. Science,1997, 278: 838—840
[ 36 ] Elliott J M , Attard G S, Bartlett P N , et al. Chem.M ater. , 1999, 11 (12) : 3602—3609
[ 37 ] Elliott J M , Birkin P R, Bartlett P N , et al. L angmuir,1999, 15 (22) : 7411—7415
[ 38 ] Ding J H, Gin D L. Chem. M ater. , 2000, 12 (1) : 22—24
[ 39 ] Gin D L , Smith R, Deng H, et al. Synthetic Metals,1999, 101: 52—55
[ 40 ] Gray D H, Gin D L. Chem. M ater. , 1998, 10 (7) : 1827—1832
[ 41 ] Deng H, Gin D L , Smith R C. J. Am. Chem. Soc. , 1998,120 (14) : 3522—3523
[ 42 ] Qi L M , Gao Y Y, Ma J M. Colloids and Surfaces A ,1999, 157 (1/3) : 285—294
[ 43 ] Wang W , Chen X, Efrima S. J. Phys. Chem. B, 1999, 103(34) : 7238—7246
[ 44 ] Wang W , Efrima S, Reger O. L angmuir, 1998, 14 (3) :602—610
[ 45 ] Wang W , Efrima S, Reger O. J. Phys. Chem. B, 1999,103 (27) : 5613—5621
[ 46 ] Quillier C, Fabre P, Cabuil V. J. Phys. Chem. , 1993, 97(2) : 287—289
[ 47 ] Quillier C, Ponsinet V , Cabuil V. J. Phys. Chem. , 1994,98 (14) : 3566—3569
[ 48 ] Chen X, Efrima S, Regev O , et al. Science in Ch ina (Series B) , 2001, 44 (5) : 492—499
[ 49 ] Chen X, Efrima S, Regev O , et al. Studies in Surface Science and Catalysis, 2001, 132: 711—714
[ 50 ] Firestone M A , William s D E, Seifert S, et al. Nano Lett. , 2001, 1 (3) : 129—135

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