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1.
醇的链长对微乳状液形成的影响   总被引:6,自引:0,他引:6  
本文研究了醇对非离子型表面活性剂AEO9[C12H25O(C2H4O)9OH]、正庚烷、水体系形成微乳液的影响。通过四组分的拟三元相图,得到各体系的微乳区。结果表明,当醇的链长不同时,体系的微乳区的类型及面积均不同。其中,丁醇体系的微乳区面积最大,它比Bansal-Shah-O'connel相关方程的结果少一个碳原子。  相似文献   

2.
醇对高效氯氟氰菊酯微乳液相图的影响   总被引:6,自引:0,他引:6  
通过电导率的测定研究了高效氯氟氰菊酯微乳液的结构结构及结构转变。在表面活性剂、高效氯氟氰菊酯环己酮溶液、醇相对含量一定的情况下,当醇为乙醇时,微乳液经历了由W/O到双连续最后到O/W型的变化;当醇为正辛醇时,微乳液经历了由W/O到液晶、双连续最后到O/W型的变化。绘制了不同条件下高效氯氟氰菊酯微乳体系的拟三元相图,讨论了醇种类、醇含量对各类型微乳区形成的影响。结果表明,随着醇碳链的增大,微乳区面积先增大后减小;醇(正辛醇)固定时,随着醇含量增加,微乳区面积先减小后增大。  相似文献   

3.
不同链长烷基芳基磺酸盐形成微乳液的性质   总被引:1,自引:0,他引:1  
以Winsor相态图法和拟三元相图法研究了自制的3种不同链长烷基芳基磺酸盐在多组分体系中形成的微乳液的性质,并考察了分子结构、无机盐和短链醇等的影响.结果表明,无机盐浓度的增加导致表面活性剂/正丁醇/正辛烷/NaCl/水形成的微乳液体系在一定温度下发生由WinsorⅠ→WinsorⅢ→WinsorⅡ型转变;随着烷基芳基磺酸盐分子的长烷基链碳原子数的增加,耐盐能力减弱,增溶能力提高;随着醇碳链的增大,微乳区面积先增大后减小.当烷基芳基磺酸盐分子结构固定时,最大微乳液区域醇的选择依据符合Bansal理论.醇的链长一定时,随着烷基芳基磺酸盐分子的长烷基链碳原子数的增加,微乳液的区域变小.  相似文献   

4.
由表面活性剂、醇、油和水所组成的微乳液,油相的烷烃长度会影响到微乳液的性质,主要表现在界面相组成和界面张力.Birdi 用加溶法研究以十六烷、硬脂酸钠、水和醇(从C_5到C_9)所组成的微乳液,醇的碳原子数n_a 与标准自由能△G(?)有以下关系:△G(?),醇=1563-839.5n_a(J·mol~(-1)在同样体系内,戊醇和不同烷烃则:  相似文献   

5.
以非离子型表面活性剂形成微乳液的碳原子数相关性研究   总被引:7,自引:0,他引:7  
由非离子型表面活性剂、助表面活性剂(醇)、水和油形成微乳液,用拟三角相图中微乳区的面积确定形成微乳液的最佳条件,实验证明,油的碳原子数加上醇的碳原子数等于表面活性剂的碳原子数对为微乳液形成最佳条件,也符合BSO规律。  相似文献   

6.
以环境友好型的Tween80为表而活性剂,以醇(乙醇、正丁醇、正己醇、正辛醇、正癸醇和异戊醇)为助表面活性剂,对离子液体1-丁基-3-甲基咪唑六氟磷酸盐(bmimPF6)和甲苯进行了微乳化实验,绘制了不同条件下Tween80离子液体的微乳体系的拟二元相图,考察了醇的种类、含量对单相微乳区的影响,并用电导法研究了在乙醇为助表面活性剂情况下,单相微乳区的结构转变.结果表明,当醇(异戊醇)固定时,随着表面活性剂/醇的质量比增加,单相微乳区的面积逐渐增大:不同链长的直链醇对单相微乳区的而积影响与该醇在离子液体中的溶解情况有关,单相微乳区的面积随着直链醇链长的增加而越小;当乙醇作助表面活性剂时,所得到的单相微乳区的而积最大,且单相微乳区存在着O/IL(oil-in-ionic liquid)、双连续相和IL/O(ionic liquid-in-oil)三种微结构.尤其对离子液体微乳体系的电导随油的含量的增加而最初增大的现象进行了解释,这一现象是由于油主要起到减少离子液体中离子对或离子的积聚,提高带电离子淌度的作用.  相似文献   

7.
以环境友好型的Tween80为表面活性剂, 以醇(乙醇、正丁醇、正己醇、正辛醇、正癸醇和异戊醇)为助表面活性剂, 对离子液体1-丁基-3-甲基咪唑六氟磷酸盐(bmimPF6)和甲苯进行了微乳化实验, 绘制了不同条件下Tween80离子液体的微乳体系的拟三元相图, 考察了醇的种类、含量对单相微乳区的影响, 并用电导法研究了在乙醇为助表面活性剂情况下, 单相微乳区的结构转变. 结果表明, 当醇(异戊醇)固定时, 随着表面活性剂/醇的质量比增加, 单相微乳区的面积逐渐增大; 不同链长的直链醇对单相微乳区的面积影响与该醇在离子液体中的溶解情况有关, 单相微乳区的面积随着直链醇链长的增加而越小; 当乙醇作助表面活性剂时, 所得到的单相微乳区的面积最大, 且单相微乳区存在着O/IL(oil-in-ionic liquid)、双连续相和IL/O(ionic liquid-in-oil)三种微结构. 尤其对离子液体微乳体系的电导随油的含量的增加而最初增大的现象进行了解释, 这一现象是由于油主要起到减少离子液体中离子对或离子的积聚, 提高带电离子淌度的作用.  相似文献   

8.
四磺化酞菁钴在微乳液、醇-水体系中的二聚现象研究   总被引:2,自引:0,他引:2  
采用分光光度法研究了四磺化酞菁钴(CoTSPc),在微乳液(TritonX-100-壬烷-正戊醇-水)、醇-水(甲醇、乙醇、丙醇)体系中的二聚现象,计算了CoTSPc的二聚常数KD。结果表明,CoTSPc的二聚常数KD值随着微乳液中表面活性的浓度及醇-水溶液的介电常数的增加而减小。  相似文献   

9.
P507(K)-醇-正庚烷-水微乳液界面含醇量变化及对体系结构的影响沈兴海,高宏成(北京大学技术物理系,北京,100871)关键词微乳液,2-乙基己基-2-乙基己基膦酸钾,饱和溶水量醇的性质与含量通过影响微乳液界面性质而影响其结构,而W/O型微乳液中...  相似文献   

10.
水基微乳液;溶剂极性对磺化聚苯醚微乳液相反转的影响  相似文献   

11.
Yeast alcohol dehydrogenase (YADH) showed substantial decrease in its catalytic activity due to the strong electrostatic interaction between the head groups of sodium bis(2-ethylhexyl) sulfosuccinate (AOT) and YADH in AOT reverse micelles. However, the catalytic activity of YADH in a nonionic reverse micellar interface (GGDE/TX-100) obtained from a functional nonionic surfactant N-gluconyl glutamic acid didecyl ester (GGDE) and Triton X-100 (TX-100) was higher than that in AOT reverse micelle under the respective optimum conditions. A comparison of the kinetic parameters showed that the turnover number kcat in GGDE/TX-100 reverse micelle was 1.4 times as large as that in AOT reverse micelle, but the Michaelis constants in AOT reverse micelle for ethanol KmB was twice and for coenzyme NAD+ KmA was 5 times higher than their counterparts in GGDE/TX-100 reverse micelle. For the conversion of ethanol, the smaller KmB and larger kcat in GGDE/TX-100 reverse micelle resulted in higher catalytic efficiency kcat/KmB. The stability of YADH in GGDE/TX-100 reverse micelle was also found to be better than that in AOT reverse micelle. They were mainly attributed to the absence of electric charge on the head groups of GGDE and TX-100 in the GGDE/TX-100 reverse micelle.   相似文献   

12.
The behavior of two polydisperse nonionic surfactants, poly (oxyethylene) glycol alkylphenyl ether TX-35 and TX-100, at the prewetted silica gel/n-heptane and dried silica gel/n-heptane interfaces has been compared by the determination of the average adsorption isotherms of the polydisperse surfactants and of displacement enthalpies. From HPLC experiments, we could also separately quantify the adsorption of each ethyleneoxide (EO) fractions for silica gel from the polydisperse surfactant solution. The adsorption isotherms clearly indicate an incomplete preferential adsorption of the large (EO) chains over the small ones, as well on dried silica gel as on a prehydrated sample. This preferential adsorption and its driving force follow the solubility rules of the poly(oxyethylene) glycol alkylphenyl ether in an apolar solvent and support the idea of a solubility-limited adsorption: solubility in organic solvents of the smaller (EO) chains is much more significant than that of the longer ones and hence prevents adsorption of the smaller species. Consequently, it is observed that the presence of interfacial water decreases the affinity of TX-35 molecules for the hydrophilic silica surface due to the hydration of (EO) chains. In contrast, for TX-100 adsorption after the prewetting treatment the clearest trend is a drastic increase of the adsorption ascribed to the additional solubilization (and micellization) of the TX-100 molecules in the interfacial aqueous phase. The differential molar enthalpies of displacement show a change in the adsorption mechanism, depending on the presence of molecular water on the surface. In the initial part of the adsorption isotherm, a prevailing exothermic process is obtained with prehydrated silica and suggests that hydration of the polar heads of TX-35 and the solubilization of the TX-35 in interfacial water are occurring. For higher equilibrium concentrations, the enthalpies of displacement observed with the prehydrated adsorbent become slightly lower than those obtained with dry silica gel. It may be that this difference is due to the micellization phenomenon of the surfactant species with longer EO chains in interfacial water. These features emphasize the influence of interfacial water on the adsorption of EO fractions from organic solvent. Copyright 2000 Academic Press.  相似文献   

13.
Formation and structure transition of the complex composed of triblock copolymer F127 and nonionic surfactant TX-100 have been investigated by 1H NMR spectroscopy, dynamic light scattering (DLS), and isothermal titration calorimetry (ITC). Three TX-100 concentration regions are identified, within which TX-100/20 mg/mL F127 complex undergoes different temperature-induced structure transitions. In low concentration region (< 9.42 mM), F127 single molecular species (unimers) wrap around TX-100 micelles forming F127/TX-100 complex with TX-100 micelle as the skeleton at a lower temperature (5 degrees C), and the skeleton transfers to F127 micelle at higher temperature (40 degrees C); in intermediate TX-100 concentration region (9.42-94.85 mM), the skeleton of F127/TX-100 complex transfers from TX-100 micelle successively into F127 micelle and TX-100 micelle again upon heating. The interaction of F127 with TX-100 is saturated in high TX-100 concentration region (> 157.57 mM), and free TX-100 micelles coexist with larger clusters of F127/TX-100 complexes. In addition, TX-100-induced F127/TX-100 complex formation and structure transition are also investigated at constant temperatures. The results show that within 5-10 degrees C, F127 unimers mainly adsorb on the surface of TX-100 micelles just like normal water soluble polymers; in the temperature region of 15-25 degrees C, TX-100 micelles prompts F127 micelle formation. Within 30-40 degrees C, TX-100 inserts into F127 micelles leading to the breakdown of F127 aggregates at higher TX-100 concentrations, and the obtained unimers thread through TX-100 micelles forming complex with TX-100 micelle as skeleton.  相似文献   

14.
Silica nanoparticle/mesoporous silica composite films were prepared by direct mixing with mechanical stirring and thermal imidization. The structural morphology was elucidated by scanning electron microscopy and the surface of the film was imaged by atomic force microscopy. The functional groups and desorption process of the films were elucidated by Fourier transform infrared spectroscopy and thermal desorption spectroscopy. The mechanical properties were investigated using a nanoindenter system. The gel matrix and the filler are very compatible because they have similar molecular content. The composite films had a higher mechanical strength than pure porous silica film. Their strength is related to the silica nanoparticle content. The interfacial compatibility, dispersion effect, and interfacial strength also affect the mechanical strength of composite films.  相似文献   

15.
Adsorption of Triton X-100 (TX-100) on silica gel has been studied as a function of temperature (308–328 K) and composition for mixtures of water with ethanol or t-butanol. The adsorption capacity of silica gel for TX-100 decreases with increase in alcohol content. Adsorption isotherms of TX-100 on silica gel are four-region and were analyzed using the ARIAN (adsorption isotherm regional analysis) model. Data in regions 2, 3 and 4 were fitted to the Temkin, bilayer and reverse desorption isotherms, respectively. The results show that adsorption of TX-100 on silica gel in water and alcohol-water binary mixtures occurs mainly through formation of monolayer surface aggregates or low bilayer coverage.   相似文献   

16.
The formation of thin wetting films on silica surface from aqueous solution of (a) tetradecyltrimetilammonium bromide (C14TAB) and (b) surfactant mixture of the cationic C14TAB with the anionic sodium alkyl- (straight chain C12–, C14– and C16–) sulfonates, was studied using the microscopic thin wetting film method developed by Platikanov. Film lifetimes, three-phase contact (TPC) expansion rates, receding contact angles and surface tension were measured. It was found that the mixed surfactants caused lower contact angles, lower rates of the thin aqueous film rupture and longer film lifetimes, as compared to the pure C14TAB. This behavior was explained by the strong initial adsorption of interfacial complexes from the mixed surfactant system at the air/solution interface, followed by adsorption at the silica interface. The formation of the interfacial complexes at the air/solution interface was proved by means of the surface tension data. It was also shown, that the chain length compatibility between the anionic and cationic surfactants controls the strength of the interfacial complex and causes synergistic lowering in the surface tension. The film rupture mechanism was explained by the heterocoagulation mechanism between the positively charged air/solution interface and the solution/silica interface, which remained negatively charged.  相似文献   

17.
利用悬挂滴方法研究了系列聚氧乙烯失水山梨醇脂肪酸酯(Tween X)在正癸烷-水界面的扩张流变性质.实验结果表明,疏水烷基链长较短的Tween20分子在界面上吸附量较大,分子排列更紧密,Tween40和Tween60具有大致相同的"有效截面积",导致饱和吸附时界面张力(γcmc)比较接近.Tween X浓度大于临界胶束浓度(cmc)时,由于Tween20分子排列的更加紧密,模量和弹性大于Tween40和Tween60.当Tween X的疏水烷基链长达到一定长度时,Tween X的界面膜性质受疏水链长的影响减弱,Tween40和Tween60的扩张参数相差不大.  相似文献   

18.
The interaction in two mixtures of a nonionic surfactant Triton-X-100 (TX-100) and different ionic surfactants was investigated. The two mixtures were TX-100/sodium dodecyl sulfate (SDS) and TX-100/cetyltrimethylammonium bromide (CTAB) at molar fraction of TX-100, αTX-100 = 0.6. The surface properties of the surfactants, critical micelle concentration (CMC), effectiveness of surface tension reduction (γCMC), maximum surface excess concentration (Γmax), and minimum area per molecule at the air/solution interface (A min) were determined for both individual surfactants and their mixtures. The significant deviations from ideal behavior (attractive interactions) of the nonionic/ionic surfactant mixtures were also determined. Mixtures of both TX-100/SDS and TX-100/CTAB exhibited synergism in surface tension reduction efficiency and mixed micelle formation, but neither exhibited synergism in surface tension reduction effectiveness.  相似文献   

19.
5,15-di(4-hydroxyphenyl)-10,20-di(hexadecyloxyphenyl) porphyrin P was solubilized in nonionic polyoxyethylene(9.5) octylphenol (Triton X-100 or TX-100) micelle solutions. By means of analyzing the UV-visible and fluorescence spectra of the synthesized amphiphilic porphyrin P in different solvent environments, and the relationship between the solubilizing location of the porphyrins in TX-100 micelle and the microenvironment polarity, P is shown to involve in a transfer process for the porphyrin moiety from inner to the outer surface of TX-100 micelle as the pH is increased. The kinetic study of porphyrin incorporate with Cu(II) shows that metalation rate of porphyrin increases with the pH increasing, indicating that metalation rate could be controlled by changing pH.  相似文献   

20.
Physicochemistry of micellization of binary mixtures of cetylpyridinium chloride (CPC) and Triton X-100 (TX-100) have been investigated and the data collected have been analyzed and correlated. Tensiometric, conductometric, spectrophotometric, calorimetric and polarographic methods have been employed in the study. Parameters like critical micellar concentration (CMC), counter-ion binding, energetics of micellization, interfacial surfactant adsorption and minimum area of amphiphile head groups at CMC have been determined. The diffusion coefficients of pure and mixed micelles in solution have been determined by the polarographic method. The regular solution theory of Rubingh has been considered to get information on the micellar composition and their mutual interaction (synergistic for the studied system) in solution. The packing of the monomer in micelle has been estimated to witness spherical geometry for CPC and its mixtures with TX-100, whereas the later has been found to be spheroidal. Polarographic measurements have evidenced comparable diffusion coefficients of CPC and TX-100 micelles whereas their mixed micelles have shown lower values with a minimum, at equimolar composition.  相似文献   

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