中文
Announcement
More
Progress in Chemistry 2005, Vol. 17 Issue (06): 987-993 Previous Articles   Next Articles

• Review •

Advances in Heterogemini Surfactants

Zhao Jianxi**   

  1. Department of Applied Chemistry,College of Chemistry and Chemical Engineering,Fuzhou University, Fuzhou 350002, China
  • Received: Revised: Online: Published:
  • Contact: Zhao Jianxi
PDF ( 1514 ) Cited
Export

EndNote

Ris

BibTeX

Symmetrical gemini surfactants are made up of two identical amphiphilic moieties covalently connected at the level of the headgroups by a spacer chain. The gemini surfactants have been attracting increasing attention owing to their novel and complicated self2assembly behaviour. Up to now , however , only a few works have been focused on unsymmetrical gemini surfactants ( also called heterogeminis) because of the difficulty for synthesis. The initial investigations showed that the heterogeminis have more molecular structure factors that can be regulated and governed during the process of the molecular self2assembly than symmetrical geminis. Some novel results had been obtained , for example , enhanced driving force of enthalpy factor , constructed counterions2free systems by the heterogeminis containing cationic2anionic head groups and bound vesicles formed by heterogeminis making use of its different length of alkyl chains, etc. The advances in investigating heterogemini surfactants are reviewed and the potential significance in study of heterogeminis is pointed out .

CLC Number: 

[ 1 ] Zana R. Advances in Colloid and Interface Science , 2002 , 97 :205 —253
[ 2 ] Menger F M, Keiper J S. Angew. Chem. Int . Ed. , 2000 , 39 :1906 —1920
[ 3 ] Rosen M J . Chemtech , 1993 , 30 —33
[ 4 ] De S , Aswal V K, Goyal P S , Bhattacharya S. J . Phys. Chem. ,1996 , 100 : 11664 —11671
[ 5 ] Zana R. J . Colloid Interface Sci . , 2002 , 248 : 203 —220
[ 6 ] Israelachvili J . Intermolecular & Surface Forces. San Diego :Academic Press , 1992
[ 7 ] Jaeger D A , Li B , Clark T. Langmuir , 1996 , 12 : 4314 —4316
[ 8 ] Renouf P , Mioskowski C , Lebeau L , Hebrault D , Desmurs J R.Tetrahedron Letters , 1998 , 39 : 1357 —1360
[ 9 ] Lee D J . Colloid Polym. Sci . , 1995 , 273 : 539 —543
[10] Tanford C. The Hydrophobic Effect : Formation of Micelles and Biological Membranes , 2nd ed. Krieger Publishing Company ,1991. 2
[11] Diamant H , Andelman D. Langmuir , 1995 , 11 : 3605 —3606
[12] Bai G Y, Wang Y J , Yan H K, Tnomas R K. J . Colloid Interface Sci . , 2001 , 240 : 375 —377
[13] Bai G Y, Wang J B , Yan H K, Li Z X, Thomas R K. J . Phys.Chem. B , 2001 , 105 : 9576 —9580
[14] Bai G Y, Wang J B , Yan H K, Li Z X, Thomas R K. J . Phys.Chem. B , 2001 , 105 : 3105 —3108
[15] Bai G Y, Yan H K, Thomas R K. Langmuir , 2001 , 17 : 4501 —4504
[16] Bai G Y, Wang J B , Wang Y J , Yan H K, Thomas R K. J .Phys. Chem. B , 2002 , 106 : 6614 —6616
[17] Soderman O , Herrington K L , Kaler E W, Miller D D.Langmuir , 1997 , 13 : 5531 —5538
[18] Zemb T , Dubois M, Deme B , Gulik-Krzywicki T. Science ,1999 , 283 : 816 —819
[19] Jung H T , Coldren B , Zasadzinski J A , Iampietro D J , Kaler E W. PNAS , 2001 , 98 : 1353 —1357
[30] Jung H T , Lee S Y, Kaler E W, Coldren B , Zasadzinski J A.PNAS , 2002 , 99 : 15318 —15322
[21] Peresypkin A V , Menger F M. Org. Lett . , 1999 , 1 : 1347 —1350
[22] Menger F M, Sykes B M. Langmuir , 1998 , 14 : 4131 —4137
[23] Menger F M, Seredyuk V A , Apkarian R P , Wright E R. J . Am.Chem. Soc. , 2002 , 124 : 12408 —12409
[24] Menger F M, Peresypkin A V. J . Am. Chem. Soc. , 2001 , 123 :5614 —5615
[25] Menger F M, Peresypkin A V. J . Am. Chem. Soc. , 2003 , 125 :5340 —5345
[26] Oda R , Huc I , Homo J C , Heinrich B , Schmutz M, Candau S.Langmuir , 1999 , 15 : 2384 —2390
[27] Seredyuk V , Alami E , Nyden M, Holmberg K, Peresypkin A V ,Menger F M. Colloids Surfaces A , 2002 , 203 : 245 —258
[28] Seredyuk V , Alami E , Nyden M, Holmberg K, Peresypkin A V ,Menger F M. Langmuir , 2001 , 17 : 5160 —5165
[29] Alami E , Holmberg K, Eastoe J . J . Colloid Interface Sci . ,2002 , 247 : 447 —455
[30] Alami E , Holmberg K. J . Colloid Interface Sci . , 2001 , 239 :230 —240
[31] Alami E O , Holmberg K. Advances in Colloid Interface Sci . ,2003 , 100P102 : 13 —46
[32] Sikiric M, Smit I , Tusek-Bozic L , Tomasic V , Pucic I , Primozic I , Filipovic2Vincekovic F. Langmuir , 2003 , 19 : 10044 —10053
[33] Kumar A , Alami E , Holmberg K, Seredyuk V , Menger F M.Colloids Surfaces A , 2003 , 228 : 197 —207
[34] Eastoe J , Dalton J S , Heenan R K. Langmuir , 1998 , 14 : 5719 —5724
[35] Seredyuk V , Holmberg K. J . Colloid Interface Sci . , 2001 , 241 :524 —526
[36] Alami E , Abrahmsen-Alami S , Eastoe J , Heenan R K.Langmuir , 2003 , 19 : 18 —23
[37] Abrahmsen-Alami S , Alami E , Eastoe J , Cosgrove T. J . Colloid Interface Sci . , 2002 , 246 : 191 —202
[38] Alami E , Abrahmsen-Alami S , Eastoe J , Grillo I , Heenan R K.J . Colloid Interface Sci . , 2002 , 255 : 403 —409
[39] Pinazo A , Seguer J , Infante M R , Park S Y, Franses E I.Colloids Surfaces A , 1997 , 126 : 49 —58
[40] Fischer P , Rehage H , Gruning B. J . Phys. Chem. B , 2002 ,106 : 11041 —11046
[41] Gouzy M F , Guidetti B , Andre-Barres C , Rico-Lattes I , Lattes A , Vidal C. J . Colloid Interface Sci . , 2001 , 239 : 517 —521

[1] Jiaye Li, Peng Zhang, Yuan Pan. Single-Atom Catalysts for Electrocatalytic Carbon Dioxide Reduction at High Current Densities [J]. Progress in Chemistry, 2023, 35(4): 643-654.
[2] Liangchun Li, Renlin Zheng, Yi Huang, Rongqin Sun. Self-Sorting Assembly in Multicomponent Self-Assembled Low Molecular Weight Hydrogels [J]. Progress in Chemistry, 2023, 35(2): 274-286.
[3] Shunxin Gu, Qin Jiang, Pengfei Shi. Antitumor Activity and Application of Luminescent Iridium(Ⅲ) Complexes [J]. Progress in Chemistry, 2022, 34(9): 1957-1971.
[4] Meng Wang, He Song, Yewen Li. Three Dimensional Self-Assembled Blue Phase Liquid Crystalline Photonic Crystal [J]. Progress in Chemistry, 2022, 34(8): 1734-1747.
[5] Yanyan Wang, Limin Chen, Siyang Li, Luhua Lai. How Intrinsically Disordered Proteins Modulate Biomolecular Condensates [J]. Progress in Chemistry, 2022, 34(7): 1610-1618.
[6] Hang Yin, Zhi Li, Xiaofeng Guo, Anchao Feng, Liqun Zhang, San Hoa Thang. Selection Principle of RAFT Chain Transfer Agents and Universal RAFT Chain Transfer Agents [J]. Progress in Chemistry, 2022, 34(6): 1298-1307.
[7] Xuanshu Zhong, Zongjian Liu, Xue Geng, Lin Ye, Zengguo Feng, Jianing Xi. Regulating Cell Adhesion by Material Surface Properties [J]. Progress in Chemistry, 2022, 34(5): 1153-1165.
[8] Hong Li, Xiaodan Shi, Jieling Li. Self-Assembled Peptide Hydrogel for Biomedical Applications [J]. Progress in Chemistry, 2022, 34(3): 568-579.
[9] Yuling Liu, Tengda Hu, Yilian Li, Yang Lin, Borsali Redouane, Yingjie Liao. Fast Self-Assembly Methods of Block Copolymer Thin Films [J]. Progress in Chemistry, 2022, 34(3): 609-615.
[10] Chuxuan Yan, Qinglin Li, Zhengqi Gong, Yingzhi Chen, Luning Wang. Organic Semiconductor Nanostructured Photocatalysts [J]. Progress in Chemistry, 2021, 33(11): 1917-1934.
[11] Yena Feng, Shuhe Liu, Shubo Zhang, Tong Xue, Honglin Zhuang, Anchao Feng. Preparation of SiO2/Polymer Nanocomposites Based on Polymerization-Induced Self-Assembly [J]. Progress in Chemistry, 2021, 33(11): 1953-1963.
[12] Qiangqiang Yang, Chuan Li, Shuxian Yu, Shuhua Fan, Yuexia Wang, Min Hong. Application of Nanocarriers in Co-Loading siRNA and Chemotherapeutic Drugs to Reverse Multidrug Resistance of Tumor [J]. Progress in Chemistry, 2021, 33(10): 1900-1916.
[13] Yi Zhou, Jingjing Hu, Fanning Meng, Caiyun Liu, Liguo Gao, Tingli Ma. Energy Band Regulation in 2D Perovskite Solar Cells [J]. Progress in Chemistry, 2020, 32(7): 966-977.
[14] Zixuan Wang, Yuefei Wang, Wei Qi, Rongxin Su, Zhimin He. Design, Self-Assembly and Application of DNA-Peptide Hybrid Molecules [J]. Progress in Chemistry, 2020, 32(6): 687-697.
[15] Kangkang Zhi, Xin Yang. Natural Product Gels and Their Gelators [J]. Progress in Chemistry, 2019, 31(9): 1314-1328.
Viewed
Full text


Abstract

Advances in Heterogemini Surfactants