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首页> 外文期刊>RSC Advances >Aggregation of 1-alkyl-3-methylimidazolium octylsulphate ionic liquids and their interaction with Triton X-100 micelles
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Aggregation of 1-alkyl-3-methylimidazolium octylsulphate ionic liquids and their interaction with Triton X-100 micelles

机译:1-烷基-3-甲基咪唑鎓辛基硫酸盐离子液体的聚集及其与Triton X-100胶束的相互作用

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摘要

Halogen-free surface active and biamphiphilic ionic liquids 1-alkyl-3-methylimidazolium octylsulphates (C(n)mim C8SO4, n = 4, 6, 8, 10) were synthesized and their aqueous solution behaviour was studied using surface tension, conductance, H-1 nuclear magnetic resonance (H-1-NMR), and small angle neutron scattering (SANS). These catanionic type surfactants demonstrate high surface activity. SANS data revealed that C(4)mim C8SO4 and C(6)mim C8SO4 form spherical and ellipsoidal micelles in water, while those with long chain imidazolium cations (C(8)mim C8SO4 and C(10)mim C8SO4) depict limited aqueous solubility and form vesicles. The effect of addition of these ionic liquids on the phase and aggregation behaviour of nonionic surfactant Triton X-100 (TX-100) solution was investigated using cloud point (CP), H-1-NMR, zeta potential and scattering (DLS and SANS) techniques. These C(n)mim C8SO4 ionic liquids show remarkable changes in the CP of TX-100 aqueous solutions and micelle size depending on the alkyl chain of the cation and anion. The site of C(n)mim C8SO4 in TX-100 micelles was investigated by NMR. The SANS data for the size/shape of aqueous TX-100 with C(4)mim C8SO4 and C(6)mim C8SO4 systems showed an ellipsoidal to smaller ellipsoidal micelle transition. Addition of C(8)mim C8SO4 and C(10)mim C8SO4 in TX-100 showed a micelle transition of ellipsoidal to smaller ellipsoidal at lower concentration and ellipsoidal to extended ellipsoidal at higher concentration, while addition of 100 mM C(10)mim C8SO4 in TX-100 formed vesicle structures. The obtained results are discussed in terms of the formation of charged mixed micelles of TX-100 with C(n)mim C8SO4 and TX-100 micelles desirably tailored by adding appropriate concentrations of ionic liquids.
机译:合成了无卤表面活性和双亲性离子液体1-烷基-3-甲基咪唑鎓辛基硫酸盐(C(n)mim C8SO4,n = 4、6、8、10),并使用表面张力,电导率, H-1核磁共振(H-1-NMR)和小角中子散射(SANS)。这些阳离子型表面活性剂显示出高的表面活性。 SANS数据显示,C(4)mim C8SO4和C(6)mim C8SO4在水中形成球形和椭圆形胶束,而长链咪唑阳离子(C(8)mim C8SO4和C(10)mim C8SO4)则显示了有限的水性溶解并形成囊泡。使用浊点(CP),H-1-NMR,ζ电位和散射(DLS和SANS)研究了这些离子液体的添加对非离子表面活性剂Triton X-100(TX-100)溶液的相和聚集行为的影响。 )技术。这些C(n)mim C8SO4离子液体在TX-100水溶液的CP和胶束大小方面表现出显着变化,具体取决于阳离子和阴离子的烷基链。通过NMR研究了TX-100胶束中C(n)mim C8SO4的位点。具有C(4)mim C8SO4和C(6)mim C8SO4系统的TX-100水溶液的大小/形状的SANS数据显示了从椭圆形到较小的椭圆形胶束的转变。在TX-100中添加C(8)mim C8SO4和C(10)mim C8SO4表明,在较低浓度下,椭球体由胶束转变为较小的椭圆体;在较高浓度下,则由椭球体转变为延伸的椭圆体,同时添加100 mM C(10)mim TX-100中的C8SO4形成了囊泡结构。根据形成的带碳的混合胶束TX-100与C(n)mim C8SO4和TX-100胶束的形成进行了讨论,希望通过添加适当浓度的离子液体来定制这些胶束。

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