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Progress in Chemistry 2007, Vol. 19 Issue (10): 1606-1612 Previous Articles   Next Articles

• Review •

Application of Self-Assembled System Based on Ionic Surfactants Adsorbed onto Oxides Surface in Chemistry

Li Jidong 1,2;Cai Yaqi1**;Shi Yali1;Mou Shi-Feng1;Jiang Gui-Bin1   

  1. 1 State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China;

    2General Research Institute for Non-ferrous Metals, Beijing 100088, China

  • Received: Revised: Online: Published:
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The theory and characteristics of self-assembled system based on ionic surfactants adsorbed onto oxides surface are introduced in this paper. The hemimicelles, admicelles and mixed admicelles are formed by the ionic surfactant molecules adsorbing onto the surface of oxides spontaneously. The formed system has a strong adsorbing function for the hydrophobic organic compounds and metal ions which were chelated with organic reagent. The applications of self-assembled structure in analytical and environmental chemistry are reviewed according to different kinds of self-assembled systems and the future applications are prospected.

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[ 1 ] Whitesides G M, Graybowski B. Science , 2002 , 295 : 2418 —2421
[ 2 ] Chaki N K. Biosensors &Bioelectronics , 2002 , 17 : 1 —12
[ 3 ] Granstrom M, Berggren M, Inganas O. Science , 1995 , 267 :1479 —1481
[ 4 ] Lopez-Jimenez FJ , Rubio S , Perez-Bendito D. Analytical Chimica Acta , 2005 , 551 : 142 —149
[ 5 ] Bohmer M R , Koopal L K. Langmuir , 1992 , 8 : 2649 —2659
[ 6 ] Goloub T P , Koopal L K, Bijsterbosch B H , et al . Langmuir ,1996 , 12 : 3188 —3194
[ 7 ] Saitoh T , Matsushima S , Hiraide M. J . Chromatogr. A , 2005 ,1069 : 271 —274
[ 8 ] Atkin R , Carig V S J , Wanless E J , et al . Adv. Colloid Interface Sci . , 2003 , 103 : 219 —304
[ 9 ] Holsen T M, Taylor E R , Seo Y C , et al . Sci . Technol . , 1991 ,25 : 1585 —1589
[10] Christian S D , Scamehorn J F. Solubilization in Surfactant Aggregates. New York : Marcel Dekker , 1995. Chapter 8
[11] Goloub T P , Koopal L K, Bijsterbosch B H , et al . Langmuir ,1996 , 12 : 3188 —3194
[12] Li J L , Bai R B , Chen B H. Langmuir , 2004 , 20 : 6068 —6070
[13] Saitoh T , Matsushima S , Hiraide M. J . Chromatogr. A , 2004 ,1040 : 185 —191
[14] Saitoh T , Nakayama Y, Hiraide M. J . Chromatogr. A , 2004 ,972 : 205 —209
[15] Merino F , Rubio S , Perez-Bendito D. Anal . Chem. , 2003 , 75 :6799 —6806
[16] Cantero M, Rubio S , Perez-Bendito D. J . Chromatogr. A , 2004 ,1046 : 147 —153
[17] Merino F , Rubio S , Perez-Bendito D. Anal . Chem. , 2004 , 76 :3878 —3886
[18] Saitoh T , Taguchi K, Hiraide M. Analytical Chimica Acta , 2002 ,454 : 203 —208
[19] Saitoh T , Nakayama Y, Hiraide M. J . Chromatogr. A , 2002 ,972 : 205 —209
[20] Cantero M, Rubio S , Perez-Bendito D. J . Chromatogr. A , 2005 ,1067 : 161 —170
[21] Saitoh T , Matsushima S , Hiraide M. J . Chromatogr. A , 2004 ,1040 : 185 —191
[22] Lunar L , Rubio S , Perez-Bendito D. The Analyst , 2006 , 131 :835 —841
[23] Moral A , Sicilia M D , Rubio S , et al . J . Chromatogr. A , 2005 ,1100 : 8 —14
[24] Hiraide M, Hori J . Anal . Sci . , 1999 , 15 : 1055 —1058
[25] Hiraide M, Iwasawa J , Kawaguchi H. Talanta , 1997 , 44 : 231 —237
[26] Hiraide M, Sorouradin M H , Kawaguchi H. Anal . Sci . , 1994 ,10 : 125 —127
[27] Hiraide M, Ohta Y, Kawaguchi H. Fresenius J . Anal . Chem. ,1994 , 350 : 648 —650
[28] Manzoori J L , Sorouradin M H , Shabani A M H. Microchemical Journal , 1999 , 63 : 295 —301
[29] Shabani A M H , Dadfarnia S , Dehghan K. Talanta , 2003 , 59 :719 —725
[30] Manzoori J L , Sorouiradin M H , Shabani A M. J . Anal . At .Spectrom. , 1998 , 13 : 305 —308
[31] Manzoori J L , Sorouiradin M H , Shemirani F. Talanta , 1995 , 42 :1151 —1155
[32] Nan J , Yan X P. Analytica Chimica Acta , 2005 , 536 : 207 —212
[33] Absalan G, Mehrdjardi M A. Separation and Purification Technology , 2003 , 33 : 95 —101
[34] Absalan G, Goudi A A. Separation and Purification Technology ,2004 , 38 : 209 —214
[35] Asthana P K, Bhatia S. Ind. J . Environ. Protec. , 1994 , 14 :490 —501
[36] Daifullah A M, Girgis B S. Waste Resour. , 1998 , 32 : 1169 —1172
[37] Jadhav D N , Vanjara A K. Proceedings of the International Conference on Progress in Disperse System. Department of Chemistry, University of Calcutta and Indian Society for Surface Science and Technology , 2002. 16 —18
[38] Nayyar S P , Sabatini D A , Harwell J H. Environ. Sci . Technol . ,1994 , 28 : 1874 —1881
[39] Kitiyanan B , O’Haver J H , Harwell J H , et al . Langmuir , 1996 ,12 : 2162 —2168
[40] Esumi K, Yamamoto S. Colloids Surf . A: Physicochem. Eng.Aspects , 1998 , 137 : 385 —388
[41] Adak A , Bandyopadhyay M, Pal A. J . Environ. Sci . Health Part A , 2005 , 40 : 167 —172
[42] Adaka A , Pal A. Separation and Purification Technology , 2006 ,50 : 256 —262
[43] Sun S B , Jaffe P R. Environ. Sci . Technol . , 1996 , 30 : 2906 —2913
[44] Jain P M, Smith J S , Valsaraj K T. Separation and Purification Technology , 1999 , 17 : 21 —30
[45] Gawade A S , Vanjara A K, Sawant M R. Separation and Purification Technology , 2005 , 41 : 65 —71
[46] Neupane D , Park J W. Chemosphere , 2000 , 41 : 787 —792
[47] Esumi K, Sakai K, Torigoe K. Journal of Colloid and Interface Science , 2000 , 224 : 198 —201
[48] Adak A , Bandyopadhyay M, Pal A. Separation and Purification Technology , 2005 , 44 : 139 —144
[49] Adak A , Pal A , Bandyopadhyay M. Colloids and Surfaces A:Physicochem. Eng. Aspects , 2006 , 277 : 63 —68
[50] Cherkaoui I , Monticone V , Vaution C , et al . International Journal of Pharmaceutics , 1998 , 176 (1) : 111 —120
[51] Favoriti P , Monticone V , Treiner C. Journal of Colloid and Interface Science , 1996 , 179 : 173 —180
[52] Kibbey T C G, Hayes K F. Environ. Sci . Technol . , 1993 , 27 :2168 —2173
[53] Monticone V , Mannebach M H , Treiner C. Langmuir , 1994 , 10 :2395 —2398
[54] Yuan Q Z , Jain P M, Valsaraj K T. Separation and Purification Technology , 2000 , 21 : 9 —16
[55] Esumi K, Torigoe K, Suhara T , et al . Colloids and Surfaces A:Physicochemical and Engineering Aspects , 1999 , 155 : 413 —417
[56] Esumi K, Hayashi H , Koide Y, et al . Colloids and Surfaces A ,1998 , 144 : 201 —206
[57] Zouboulis A I , Matis K A , Lazaridis N K, et al . Minerals Engineering , 2003 , 16 : 1231 —1236
[58] Jurkiewicz K. Journal of Colloid and Interface Science , 2005 ,286 : 559 —563

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