China Surfactant Detergent & Cosmetics ›› 2018, Vol. 48 ›› Issue (11): 611-616.doi: 10.13218/j.cnki.csdc.2018.11.002
• Lecture of science and technology • Previous Articles Next Articles
REN Shu-jing, ZHENG Li-qiang, SUN Ji-chao
Received:
2018-10-27
Online:
2018-11-22
Published:
2019-03-18
CLC Number:
REN Shu-jing, ZHENG Li-qiang, SUN Ji-chao. Self-assembly of surfactants regulated by weak interaction (Ⅰ)The classification of weak interactions[J].China Surfactant Detergent & Cosmetics, 2018, 48(11): 611-616.
[1] Zhao Guoxi,Zhu Buyao.Principles of surfactant action [M].Beijing:China Light Industry Press,2003:1-17. [2] Xiao Jinxin,Zhao Zhenguo.The applied principle of surfactants [M].Beijing:Chemical Industry Press,2003:243-256. [3] Liu Hongguo,Sun Dejun,Hao Jingcheng.Colloid and interface chemistry [M].Beijing:Chemical Industry Press,2016:12. [4] Li Ganzuo,Xu Guiying.The theory and application of cohesive energy in molecular ordered combinations (I):interaction between molecular ordered combinations and molecules[J].China Surfactant Detergent & Cosmetics,1994(3):36-41. [5] Israelachvili J,Pashley R.The hydrophobic interaction is long range,decaying exponentially with distance[J].Nature,1982,300(5890):341-342. [6] Zhang X,Wang C.Supramolecular amphiphiles[J].Chemical Society Reviews,2010,40(1):94-101. [7] Emsley J,Hoyte O P A,Overill R E.Ab initio calculations on the very strong hydrogen bond of the biformate anion and comparative esterification studies[J].Journal of the American Chemical Society,1978,100(11):3303-3306. [8] Calhorda M J.Weak hydrogen bonds:theoretical studies[J].Chemical Communications,2000(10):801-809. [9] Pei Qiang.Supramolecular self-assembly via hydrogen bonding:combined pattern and stability[J].Journal of Xinyang Normal University (Natural Science Edition),2018(1):160-167. [10] Singh A,Lvov Y,Qadri S B.Formation of supramolecular assemblies by complementary association of octadecyloxy tartaric acid and bispyridyls[J].Chemistry of Materials,1999,11(11):3196-3200. [11] Qi Z,Schalley C A.Exploring macrocycles in functional supramolecular gels:from stimuli responsiveness to systems chemistry[J].Accounts of Chemical Research,2014,47(7):2222. [12] Guo J,Zhang H Y,Zhou Y,et al.Light-controlled reversible self-assembly of nanorod suprastructures[J].Chemical Communications,2017,53(45):6089-6092. [13] Yu G,Jie K,Huang F.Supramolecular amphiphiles based on host-guest molecular recognition motifs[J].Chemical Reviews,2015,115(15):7240-7303. [14] Yue L,Ai H,Yang Y,et al.Chiral self-assembly and reversible light modulation of a polyoxometalate complex via host-guest recognition[J].Chemical Communications,2013,49(84):9770-9772. [15] Nakahata M,Takashima Y,Yamaguchi H,et al.Redox-responsive self-healing materials formed from host-guest polymers[J].Nature Communications,2011,2(1):511. [16] Hashidzume A,Yamaguchi H,Harada A.Cyclodextrin-based molecular machines[J].Topics in Current Chemistry,2014,354(6):71. [17] Yang L,Bai Y,Tan X,et al.Controllable supramolecular polymerization through host-guest interaction and photochemistry[J].ACS Macro Letters,2015,4(6):611-615. [18] Huang Z,Yang L,Liu Y,et al.Supramolecular polymerization promoted and controlled through self-sorting[J].Angewandte Chemie International Edition,2014,126(21):5351-5355. [19] Spruijt E,Bakker H E,Kodger T E,et al.Reversible assembly of oppositely charged hairy colloids in water[J].Soft Matter,2011,7(18):8281-8290. [20] Qiao Y,Lin Y,Wang Y,et al.Metal-driven viscoelastic wormlike micelle in anionic/zwitterionic surfactant systems and template-directed synthesis of dendritic silver nanostructures[J].Langmuir,2011,27(5):1718-1723. [21] Zhang L,Cao M,Yao C,et al.Interactions of divalent and trivalent metal counterions with anionic sulfonate Gemini surfactant and induced aggregate transitions in aqueous solution[J].Journal of Physical Chemistry B,2016,120(17):4102. [22] Hunter C A,Lawson K R,Perkins J,et al.Aromatic interactions[J].Accounts of Chemical Research,2013,46(4):873. [23] Shi L,Wei Y,Sun N,et al.First observation of rich lamellar structures formed by a single-tailed amphiphilic ionic liquid in aqueous solutions[J].Chemical Communications,2013,49(97):11388-11390. [24] Babu S S,Praveen V K,Ajayaghosh A.Functional π-gelators and their applications[J].Chemical Reviews,2014,114(4):1973-2129. [25] Shen Z,Jiang Y,Wang T,et al.Symmetry breaking in the supramolecular gels of an achiral gelator exclusively driven by π-π stacking[J].Journal of the American Chemical Society,2015,137(51):16109-16115. [26] Schubert U S,Eschbaumer C.Macromolecules containing bipyridine and terpyridine metal complexes:towards metallosupramolecular polymers[J].Cheminform,2010,33(46):226. [27] Luo X,Wu S,Liang Y.Vesicle formation induced by metal ions from micelle-forming sodium hexadecylimino diacetate in dilute aqueous solution[J].Chemical Communications,2002,5(5):492-493. [28] Hoffmann H,Gräbner D,U.Hornfeck A,et al.Novel vesicles from single-chain surfactants[J].Journal of Physical Chemistry B,1999,103(4):611-614. [29] Ringsdorf H,Schlarb D C B,Venzmer D C J.Molecular architecture and function of polymeric oriented systems:models for the study of organization,surface recognition,and dynamics of biomembranes[J].Angewandte Chemie International Edition,2010,27(1):113-158. [30] Kumar M,Rao K V,George S J.Supramolecular charge transfer nanostructures[J].Physical Chemistry Chemical Physics,2014,16(4):1300. [31] Nalluri S K M,Berdugo C,Javid N,et al.Biocatalytic self-assembly of supramolecular charge-transfer nanostructures based on n-type semiconductor-appended peptides[J].Angewandte Chemie,2014,126(23):5992-5997. [32] Lv Z,Chen B,Wang H,et al.Charge-transfer supra-amphiphiles built by water-soluble tetrathiafulvalenes and viologen-containing amphiphiles:supramolecular nanoassemblies with modifiable dimensions[J].Small,2015,11(29):3597-3605. [33] Bhattacharjee S,Bhattacharya S.Charge transfer induces formation of stimuli-responsive,chiral,cohesive vesicles-on-a-string that eventually turn into a hydrogel[J].Chem.Asian J.,2015,10(3):572-580. [34] Sagade A A,Rao K V,Mogera U,et al.High-mobility field effect transistors based on supramolecular charge transfer nanofibers[J].Advanced Materials,2013,25(4):559-564. [35] Percec V,Glodde M,Bera T K,et al.Self-organization of supramolecular helical dendrimers into complex electronic materials[J].Nature,2002,419(6905):384. [36] Naka K,Itoh H,Chujo Y.Temperature-dependent reversible self-assembly of gold nanoparticles into spherical aggregates by molecular recognition between pyrenyl and dinitrophenyl units[J].Langmuir,2003,19(13):5496-5501. [37] Wang C,Guo Y,Wang Z,et al.Superamphiphiles based on charge transfer complex:controllable hierarchical self-assembly of nanoribbons[J].Langmuir,2010,26(18):14509-14511. [38] Borba E B D,Amaral C L C,Politi M J,et al.Photophysical and photochemical properties of pyranine/methyl viologen complexes in solution and in supramolecular aggregates:a switchable complex[J].Langmuir,2000,16(14):5900-5907. |
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