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Progress in Chemistry 2008, Vol. 20 Issue (01): 105-116 Previous Articles   Next Articles

• Review •

Ordered Microporous Thin Films by Self-assembly

Wang Chengyin; Mao Yindao; Wang Deyan; Hu Xiaoya**   

  1. (College of Chemistry and Engineering, Yangzhou University, Yangzhou 225002, China)
  • Received: Revised: Online: Published:
  • Contact: Hu Xiaoya
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The progresses in the formation of the ordered microporous by the macromolecular self-assembly are reviewed from the views point of the current development on the formation mechanism based on self-assembly “on-solid surface spreading” method, the materials category, the affecting factors of ordered microporous structures, and the packing modes of the observed arrangement. The application of the microporous films and research prospects in future is also discussed.

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[ 1 ] Lewandowski K, Murer P , Svec F , et al . Anal . Chem. , 1998 ,70 : 1629 —1638
[ 2 ] Wjinhoven J E GJ , Vos WL. Science , 1998 , 281 : 802 —804
[ 3 ] Yabu H , Shimomura M. Chem. Mater. , 2005 , 17 : 5231 —5234
[ 4 ] Imada M, Moda S , Chutinan A , et al . Appl . Phys. Lett . , 1999 ,75 : 316 —318
[ 5 ] Ramsey G. Nature Biotechnol . , 1998 , 16 : 40 —44
[ 6 ] Chen Y, Pepin A. Electrophoresis , 2001 , 22 : 187 —207
[ 7 ] Velev O D , Jede T A , Lobo R F , et al . Nature , 1997 , 389 :447 —448
[ 8 ] Holland B T , Blanford C F , Stein A. Science , 1998 , 281 : 538 —540
[ 9 ] Kulinowski K M, Jiang P , Vaswani H , et al . Adv. Mater. ,2000 , 12 : 833 —837
[10] Jiang P , Hwang K S , Mittleman D M, et al . J . Am. Chem.Soc. , 1999 , 121 : 11630 —11637
[11] Park S H , Xia Y. Chem. Mater. , 1998 , 10 : 1745 —1747
[12] Deutsh M, Vlasov Y A , Norris D J . Adv. Mater. , 2000 , 12 :1176 —1180
[13] Imhof A , Pine D J . Nature , 1997 , 389 : 948 —951
[14] Widawski G, Francüois B. Nature , 1994 , 369 : 387 —389
[15] Jenekhe S A , Chen XL. Science , 1999 , 283 : 372 —375
[16] Kresge C T , Leonowicz M E , Roth W J , et al . Nature , 1992 ,359 : 710 —712
[17] Jeong U , Kim H C , Rodriguez R L , et al . Adv. Mater. , 2002 ,14 : 274 —276
[18] Park C , Cheng J Y, Fasolka M J , et al . Appl . Phys. Lett . ,2001 , 79 : 848 —850
[19] Mansky P , Harrison C K, Chaikin P M. Appl . Phys. Lett . ,1996 , 68 : 2586 —2588
[20] Zhao X Y, Cai Q , Shi G X, et al . J . Appl . Polym. Sci . , 2003 ,90 : 1846 —850
[21] 赵晓勇(Zhao X Y) , 蔡晴(Cai Q) , 石桂欣(Shi G X) 等. 膜科学与技术(Membrane Science and Technology) , 2004 , 24(2) : 1 —6
[22] Wang C Y, Liu Q X, Shao X Q , et al . Talanta , 2007 , 71 :178 —185
[23] Wang C Y, Shao X Q , Liu Q X, et al . Electrochim. Acta ,2006 , 52 : 704 —709
[24] Shimomura M, Yabu H , Yamamoto H , et al . JP 023 122 , 2005
[25] Nishikawa T , Nishida J , Ookura R , et al . Mater. Sci . Eng. C ,1999 , 8P9 : 495 —500
[26] Nishikawa T , Ookura R , Nishida J , et al . Langmuir , 2002 , 18 :5734 —5740
[27] Nishikawa T , Nishida J , Ookura R , et al . Mater. Sci . Eng. C ,1999 , 10 : 141 —146
[28] Nishikawa T , Nonomura M, Arai K, et al . Langmuir , 2003 , 19 :6193 —6201
[29] Gover L V , Bashmakov I A , Kiebooms R , et al . Adv. Mater. ,2001 , 13(8) : 588 —590
[30] Gover L V , Bashmakov I A , Kaputski F N , et al . Macromol .Chem. Phy. , 2000 , 201 : 2721 —2728
[31] Nishikawa T , Nishida J , Ookura R , et al . Langmuir , 2000 , 16 :1337 —1342
[32] Kasai W, Kondo T. Macromol . Biosci . , 2004 , 4 : 17 —21
[33] Wang S X, Wang M T , Lei Y, et al . Materials Research Bulletin , 2000 , 35 : 1625 —1630
[34] Wang M T , Zhu X G, Wang S X, et al . Polymer , 1999 , 40 :7387 —7396
[35] Hiwatari K I , Serizawa T , Seto T , et al . Polymer J . , 2001 , 33 :669 —675
[36] Cui L , Ding Y, Li X, et al . Thin Solid Flims , 2006 , 515 (4) :2038 —2048
[37] Srinivasarao M, Ollings D , Philips A , et al . Science , 2001 ,292 : 79 —83
[38] Stenzel M H. Aust . J . Chem. , 2002 , 55 : 239 —243
[39] Maruyama N , Koito T , Sawadaishi T , et al . Supramol . Sci . ,1998 , 5 : 331 —336
[40] 徐又一( Xu Y Y) , 徐志康( Xu Z K) . 高分子膜材料(Macromolecular Membrane Materials) . 北京: 化学工业出版社(Beijing : Chemical Industry Press) , 2005
[41] Pitois O , Fran? ois B. Eur. Phys. J . B , 1999 , B8 : 225 —231
[42] Hernández-Guerrero M, Davis T P , Barner2Kowollik C , et al .Eur. Polym. J . , 2005 , 41(10) : 2264 —2277
[43] 陈观文(Chen G W) , 曾一鸣( Zeng Y M) . 膜科学与技术(Membrane Science and Technology) , 2003 , 23(4) : 116 —122
[44] 张学骜(Zhang X A) , 龙永福(Long Y F) , 谢凯(Xie K) 等.材料导报(Materials Review) , 2003 , 17(9) : 71 —74
[45] Pitois O , Fran? ois B. Colloid Polym. Sci . , 1999 , 277 : 574 —578
[46] Stenzel-Rosenbaum M H , Davis T P , Fane A G, et al .Macromol . , 2001 , 34 : 5433 —5438
[47] Fran? ois B , Pitois O , Francêis J . Adv. Mater. , 1995 , 7 :1041 —1044
[48] Peng J , Han Y C , Yang Y M, et al . Polymer , 2004 , 45 : 447 —452
[49] Yu C L , Zhai J , Gao X F , et al . J . Phys. Chem. B , 2004 ,108 : 4586 —4589
[50] Peng J , Han Y C , Fu J , et al . Macromol . Chem. Phys. , 2003 ,204 : 125 —130
[51] Karthaus O , Cieren X, Maruyama N , et al . Mater. Sci . Eng. C ,1999 , 10 : 103 —106
[52] Yabu H , Tanaka M, Ijiro K, et al . Langmuir , 2003 , 19 : 6297 —6300
[53] Karthaus O , Maruyama N , Cieren X, et al . Langmuir , 2000 , 16 :6071 —6076
[54] Nishikawa T , Arai K, Hayashi J , et al . Mat . Res. Soc. Symp.Proc. , 2002 , 724 : 229 —234
[55] Maruyama N , Koito T , Nishida J . Thin Solid Films , 1998 , 327/329 : 854 —856
[56] Gray J J , Klein D H , Korgel B A , et al . Langmuir , 2001 , 17 :2317 —2328
[57] Cui L , Peng J , Ding Y, et al . Polymer , 2005 , 46 : 5334 —5340
[58] Cheng C X, Tian Y, Shi Y Q , et al . Langmuir , 2005 , 21 :6576 —6581
[59] Beysens D , Steyer A , Guenoun P , et al . Phase Transitions ,1991 , 31 : 219 —246
[60] Bruno B , Adam J S , Albert L. Phys. Rev. A , 1990 , 41 :6893 —6900
[61] 田野(Tian Y) , 施艳荞(Shi Y Q) , 曾一鸣(Zeng Y M) 等. 功能高分子学报(Journal of Functional Polymers) , 2005 ,18 (3) :414 —419
[62] Li J , Peng J , Huang W H , et al . Langmuir , 2005 , 21 : 2017 —2021
[63] 田野(Tian Y) , 施艳荞(Shi Y Q) , 曾一鸣(Zeng Y M) 等. 膜科学与技术(Membrane Science and Technology) , 2005 , 25(5) : 78 —84
[64] Chan D Y C , Henry J D , White J R L R. J . Colloid Interface Sci . , 1981 , 79 : 410 —418
[65] Thomas E L , Kinning D J , Alward D B , et al . Macromol . ,1987 , 20 : 2934 —2939
[66] Wang C Y, Mao Y D , Wang D Y, et al . J . Mater. Chem. ,2008 , doi : 1011039 = 6715520d

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