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1.
不同类型表面活性剂对苯甲醇的增溶作用   总被引:2,自引:0,他引:2  
本文采用高分辨核磁共振方法,考察了苯甲醇在三种类型表面活性剂胶束中的增溶作用。 现,无论是在两性表面活性剂C12BE,还是在阴离子表面活性剂SDS和阳离子表面活性剂DTAB胶束中,苯甲醇均增溶在胶束与水的界面层和胶束栅栏层。  相似文献   

2.
胶束催化作用下实现聚苯乙烯的氯甲基化   总被引:2,自引:1,他引:2  
用紫外分光光度法测定了离子型表面活性剂胶束溶液对聚苯乙烯四氯化碳溶液的增溶性能; 用胶束催化法实现了聚苯乙烯的氯甲基化, 用红外光谱法和佛尔哈德法表征了氯甲基化聚苯乙烯的化学结构与组成; 通过比较阴、 阳离子表面活性剂及结构不同的阳离子表面活性剂的催化效果, 探索了胶束催化的作用机理, 考察了表面活性剂结构对催化作用的影响规律. 结果表明, 表面活性剂胶束溶液可增溶聚苯乙烯的四氯化碳溶液, 随着四氯化碳在胶束中的增溶, 聚苯乙烯可转移至表面活性剂的胶束中; 胶束催化是实现聚苯乙烯的氯甲基化的有效途经, 仅用3.35 g/L的十六甲基三甲基溴化铵(CTAB),  于65 ℃, 5 h内即可使聚苯乙烯大分子链中的苯环氯甲基化程度达到37%; 聚苯乙烯与甲醛、 氯化氢的反应过程由亲电取代和亲核取代串联而成, 阳离子表面活性剂比阴离子表面活性剂的催化作用更加有效, 说明亲核取代是慢步骤; 阳离子表面活性剂疏水链越长, 对聚苯乙烯的增溶效果越好, 催化作用越强.  相似文献   

3.
物理化学实验教学内容中表面活性剂溶液的临界胶束浓度(CMC)的测定通常采用表面张力法和电导率法。本实验采用接触角测定仪测定表面活性剂溶液在疏水纤维上的接触角,研究接触角随溶液浓度的变化规律,讨论了接触角法测定表面活性剂临界胶束浓度的可行性。同时采用表面张力法和电导率法分别测出了表面活性剂CTAB的临界胶束浓度,结果与接触角法一致。实验证明,接触角法操作更加简单,溶液用量少,实验结果稳定性和重复性好,可推广应用。  相似文献   

4.
树枝聚醚改性聚丙烯酰胺和阴离子表面活性剂的缔合行为   总被引:4,自引:0,他引:4  
采用粘度法、荧光探针技术和^1H NMR驰豫和自扩散方法,研究了树枝聚醚疏 水改性丙烯酰胺共聚物(PDAM)和十二烷基硫酸钠(SDS)在水溶液中的相互作用.这 种共聚物含有少量的树枝聚醚,具有疏水性,容易和SDS发生相互作用,在表面活 性剂浓度远低于临界胶束浓度(cmc)的情况下,生成混合胶束状聚集体.它们的缔 合行为和溶液性质明显地取决于表面活性剂的浓度,随着聚合物溶液中加入SDS, 溶液粘度发生急剧变化,并在较低的表面活性剂浓度处出现很大的最高点.荧光和 ^1H NMR测定结果表明,这是由于在不同SDS浓度范围内,PDAM/SDS形成的聚集体结 构不同的缘故.  相似文献   

5.
利用胶束在电极一有面的定向及增溶作用研究了表面活性剂对苯胺电聚合的影响,结果表明:在阴离子表面活性剂十二烷基硫酸钠(SDS)胶束体系中,胶束介质能催化苯胺的电聚合反应,使其氧化电位负移,减少膜的降解,提高膜的稳定性,同时,也使得聚合速率增大,在0.1mol/L的SDS的胶束溶液中,其聚合效率提高到不含SDS的纯体系的25倍,在含有10^-4mol/LSDS的硫酸溶液中,聚苯胺(PAN)的成核生长为  相似文献   

6.
由于表面活性剂混合体系具有协同效应,又称协同作用或增效作用,使得混合体系通常较单一体系在性能上更具优势.当前,核磁共振技术(NMR)在表面活性剂混合体系研究中应用十分活跃,扩散、弛豫、二维等多种现代核磁共振技术被成功用于表面活性剂混合体系的胶束形成动力学过程、胶束表征以及胶束物理/化学特性等研究工作中.该文对近年来国内外有关工作进行分析和归纳,展望了核磁共振在表面活性剂混合体系研究中的潜力.  相似文献   

7.
表面活性剂在水溶液中性质的质子核磁共振研究   总被引:1,自引:0,他引:1  
综述了质子核磁共振的几种方法在表面活性剂水溶液研究中的应用.自从上世纪六十年代以来的许多研究表明核磁共振的各种技术是研究表面活性剂溶液的有效手段.它可以提供表面活性剂在水溶液中的cmc、胶束的结构、尺寸、水化、加溶性质和位置,不同表面活性剂胶束之间的相互作用,以及胶束与生物分子和高聚物的相互作用.化学位移已经成为惯常方法,弛豫测量提供动态信息,自扩散系数测量是研究胶束尺寸的很好手段.近来由于核磁共振技术的不断发展,用于研究生物大分子的2D NOESY和HOESY也逐渐应用到研究表面活性剂聚集结构中.由此可以得到有关表面活性剂在水溶液中行为的分子水平信息,是其它谱学方法所不能及的.  相似文献   

8.
提出了用凝胶渗透色谱研究胶束溶液增溶作用的新方法,并给出了环氧乙烷-环氧丙烷-环氧乙烷三嵌段共聚物F127胶束溶液苯乙醇的实验结果。实验方便快捷,原理直观明了。在获得增溶作用参数的同时还能得到胶束-自由链平衡的重要信息。  相似文献   

9.
表面活性剂在溶液中聚集形态的动力学模拟   总被引:13,自引:1,他引:13  
用耗散颗粒动力学模拟方法(DPD)展示了表面活性剂分子在溶液中的聚集形态,用扩散程度表征了表面活性剂溶液中的自组装情况。结果发现:这种分子动力学模拟方法能够直观地得到表面活性剂的聚集形态;随着表面活性剂的浓度增加,聚集形态依次从球状胶束、棒状或虫状胶束,六角状相,向层状相变化。  相似文献   

10.
季铵盐型双子表面活性剂C14-s-C14·2Br的聚集行为   总被引:1,自引:0,他引:1  
用1H NMR弛豫、2D NOESY研究了双子表面活性剂14-s-14胶束在重水溶液中的聚集行为. 1H NMR自旋-晶格、自旋-自旋弛豫实验表明, 联结基团质子及其邻近的亚甲基质子的运动受到严重限制, 表明这些质子形成胶束疏水核的壳层;而远离极性头的疏水质子的运动则相对自由, 说明其位于胶束的内部. 14-s-14系列(s=2, 3, 4)的弛豫实验结果还表明, 联结基团越短, 分子的碳氢链在疏水核中的排列越紧密. 与14-4-14的对应单链表面活性剂TTAB相比, 它们的分子运动更受限制. 14-4-14的2D NOESY 谱给出了与16-4-16类似的交叉峰信息, 这表明14-4-14同16-4-16一样, 形成了表面不平滑的球形胶束. 因此, 烷烃链的长短对胶束中分子的排列方式没有影响.  相似文献   

11.
The micellar catalytic model (or the consecutive first order reaction has been proposed in this paper. It was applied to the alkaline hydrolysis of dimethyl phthalate in micellar solutions of surfactants (CTAB, SDS and Triton X-100), and the alkaline hydrolysis of bis (2,4-dinitrophenyl) posphate in CTAB micellar solution. Rate constants obtained in micellar phase indicate that the two steps of alkaline hydrolysis of dimethyl phthalate are both inhibited by all of the surfactants investigated. CTAB micelle exhibits a greater catalytic effect on the alkaline hydrolysis of bis (2, 4-dinitrophenyl) phosphate. this may be arised from the local concentration effect of hydroxide ion in CTAB micellar phase. Nevertheless. the second order rate constant of bis-(2, 4-dinitrophenyl) phosphate in the micellar phase is smaller than that in the bulk phase.  相似文献   

12.
胶束溶液增溶过程的高分辩NMR研究   总被引:5,自引:1,他引:5  
本文用高分辨~1H-NMR谱, 研究了十二烷基硫酸钠(SDS)胶束水溶液对m-二甲苯和苯甲醇的增溶作用。结果表明, 增溶物浓度很低时, m-二甲苯和苯甲醇均吸附在胶束-水“界面”。随着浓度增加m-二甲苯增溶在胶束的“栅栏”层和内核中, 并沿SDS的烃链均匀分布。当浓度约为0.34摩尔分数时, 它沿烃链的增溶达到“饱和”, 开始进入胶束内核中心。苯甲醇主要增溶在“栅栏”层中, 其羟基靠近胶束-水“界面”, 苯基深入到与α-CH_2基相邻的五个亚甲基的位置。  相似文献   

13.
The micellar dependencies of the photophysical properties of benoxaprofen (BXP), a 2-phenyl benzoxazole derivative, have been investigated using fluorescence spectroscopy and laser flash photolysis techniques. The fluorescence of BXP in aqueous solution has been observed to be remarkably quenched upon addition of a surfactant, cetyltrimethyl ammonium bromide (CTAB) or Triton X-100, in contrast to its enhancement in sodium dodecyl sulfate (SDS) micellar solution. Time-resolved fluorescence measurements show that the fluorescence decays biexponentially in the micellar solution, indicating the relaxation of micellar environments surrounding the excited BXP. The major component of fluorescence lifetimes in CTAB or Triton X-100 micellar phase is even shorter (330–427ps) than in SDS micellar phase (731 ps). The nonradiative decay constants are significantly larger (ca 3.0 times 109 s?1) in the CTAB or Triton X-100 micellar phase than in SDS micelles by a factor of ca 10. The major nonradiative decay is interpreted to be the internal conversion due to nuclear geometric change of BXP in the first excited singlet state. This is consistent with the observation that the quantum yields of intersystem crossing are very low (less than 0.01) in the micellar solutions as determined by the laser flash photolysis technique. The laser-induced transient absorption spectrum of BXP in CTAB or Triton X-100 micellar solution shows that the decay kinetics of the transients in CTAB or Triton X-100 are significantly different from first order kinetics in SDS.  相似文献   

14.
Wen XL  Jia YH  Liu ZL 《Talanta》1999,50(5):1027-1033
The electrochemistry of dopamine (3-hydroxytyramine) was studied by cyclic voltammetry at a glassy carbon electrode in the presence of cetyltrimethylammonium bromide (CTAB) and sodium dodecyl sulfate (SDS) micelles at different pH. The anodic peak potential (E(pa)) and peak current (I(pa)) were found to be remarkably dependent on the charge and the concentration of the surfactant. The E(pa) and I(pa) change abruptly around the critical micellar concentration (CMC) of the surfactants and reach a plateau above the CMC. The E(pa) at the plateau shifts to more positive values in the cationic CTAB micellar solution, e.g. from 180 mV vs SCE in aqueous solution at pH 6.8 to 410 mV in CTAB micelle, whilst it shifts to less positive values in the anionic SDS micellar solution, e.g. 150 mV at pH 6.8. Therefore, the overlapped anodic peaks of dopamine and ascorbic acid in the mixture of the two compounds in aqueous solutions can be separated in CTAB micelles since the micelle shifts the E(pa) of ascorbic acid to less positive values. The two peaks are separated by ca. 400 mV at pH 6.8 in CTAB micelle, hence dopamine can be determined in the presence of 100 times excess of ascorbic acid. In SDS micelle and in the presence of ascorbic acid, the I(pa) of dopamine is greatly enhanced due to the catalytic oxidation of the latter that enables quantitative determination of both compounds.  相似文献   

15.
The locus of solubilization of 6-R-2,2,4-trimethyl-1,2-dihydroquinoline molecules (R=Me, OEt) in sodium dodecyl sulfate (SDS) and cetyltrimethylammonium bromide (CTAB) has been determined by comparing the UV spectra of micellar solutions of the dihydroquinolines and their solutions in solvents of various polarities. The parameterR pv (defined as the ratio of the absorbance of the long-wave band maximum to that at the adjacent valley) decreases with an increase in the solvent polarity in the order:n-heptane > 2-propanol > ethanol > H2O. In SDS micellar solutions,R pv is close to the corresponding value in water and does not depend on [SDS]. In CTAB micellar solutions,R pv is essentially greater than in water and increases with [CTAB]. Thus, the solubilized dihydroquinoline molecules in SDS micelles reside in the Stern layer, and in CTAB micelles they are located both in the interior of the micelle and in the Stern layer; in this case the micelle packing begins from the core.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 5, pp. 948–950, May, 1994.  相似文献   

16.
隋华  李干佐  杨博 《化学学报》2000,58(1):50-55
应用UV-vis法,在不同温度条件下,对水杨酸酯(丁酯、苯酯)在CTAB溶液中的水解反应进行跟踪,测定了不同浓度的表面活性剂存在下的反应速率常数,得出CTAB对其反应是禁阻作用。通过温度对其反应速率影响,计算它们的反应活化能。并用^1HNMR方法,确定了反应物在CTAB胶束中的增溶位置,对禁阻的机理进行了探讨。  相似文献   

17.
(1)H NMR chemical shift, spin-lattice relaxation time, spin-spin relaxation time, self-diffusion coefficient, and two-dimensional nuclear Overhauser enhancement (2D NOESY) measurements have been used to study the nonionic-ionic surfactant mixed micelles. Cetyl trimethyl ammonium bromide (CTAB) and sodium dodecyl sulfate (SDS) were used as the ionic surfactants and polyethylene glycol (23) lauryl ether (Brij-35) as the nonionic surfactant. The two systems are both with varying molar ratios of CTAB/Brij-35 (C/B) and SDS/Brij-35 (S/B) ranging from 0.5 to 2, respectively, at a constant concentration of 6 mM for Brij-35 in aqueous solutions. Results give information about the relative arrangement of the surfactant molecules in the mixed micelles. In the former system, the trimethyl groups attached to the polar heads of the CTAB molecules are located between the first oxy-ethylene groups next to the hydrophobic chains of Brij-35 molecules. These oxy-ethylene groups gradually move outward from the hydrophobic core of the mixed micelle with an increase in C/B in the mixed solution. In contrast to the case of the CTAB/Triton X-100 system, the long flexible hydrophilic poly oxy-ethylene chains, which are in the exterior part of the mixed micelles, remain coiled, but looser, surrounding the hydrophobic core. There is almost no variation in conformation of the hydrophilic chains of Brij-35 molecules in the mixed micelles of the SDS/Brij-35 system as the S/B increases. The hydrophobic chains of both CTAB and SDS are co-aggregated with Brij-35, respectively, in their mixed micellar cores.  相似文献   

18.
The kinetics of the photolysis of substituted 1,2-dihydroquinolines (DHQ) in micellar solutions was studied by steady-state and flash photolysis. The photolysis mechanism depends dramatically on the location of DHQ molecules in micelles, which is governed by the surfactant nature. In micellar solutions of the anionic surfactant sodium dodecyl sulfate (SDS), where the DHQ molecules are located in the Stern layer, the intermediate species decay kinetics follows a first-order law. When DHQ is in neutral form (pH 4–12), the rate constant of the intermediate carbocation decay increases from 25 to 198 s?1 with an increasing concentration of DHQ in micelles. The positive micellar catalysis is caused by the acceleration of the final product formation with the DHQ molecule via proton abstraction from the intermediate cation. The formation of several types of intermediate species—carbocations in the aqueous phase and aminyl radicals in micelles—is observed in micellar solutions of the cationic surfactant cetyltrimethylammonium bromide (CTAB) due to the preferential location of DHQ molecules in the micellar core. The carbocation decays via a pseudofirst-order reaction with a rate constant close to that in the aqueous solution. The lifetime of the DHQ aminyl radicals in the micellar solutions is longer by several orders of magnitude than the lifetime observed for homogeneous solutions of hydrocarbons and alcohols.  相似文献   

19.
高聚物与表面活性剂的相互作用已有许多研究,其中的高聚物有聚氧乙烯、聚乙烯吡咯烷酮、聚乙烯醇、甲基纤维素以及蛋白质等。Sabbadin主要研究了部分水解聚丙烯酰胺。本工作考察非水解的聚丙烯酰胺(PAM,大连同德化工厂产品)对十二烷基硫酸钠(SDS)增溶二甲基黄(DMAB)的影响。  相似文献   

20.
Cyclic voltammetry of ferrocene, hexaammineruthenium(III) and hexacyanoferrate(II) in micellar solution sof sodium dodecyl sulfate (SDS) and cetyltrimethylammonium bromide (CTAB) was studied at platinum and pyrolytic graphite electrodes treated with octadecyltrichlorosilane. The charge-transfer rates and surface spectra were consistent with near monolayer coverage of the electrodes with an octadecylsilyl (ODS) layer bound to the surface through SiOgroups. Both SDS and CTAB were detected by x-ray photoelectron spectroscopy on ODS-coated electrodes treated with micellar solutions. Compared with bare electrodes, the signal-to-noise ratio and reproducibility were better on ODS electrodes, which were stable when stored in air. Some control over electrochemical selectivity and reversibility was achieved with ODS-coated electrodes in ionic micellar solutions. For surfactant and electroactive ions of the same charge sign, significant inhibition to charge transfer was found. Ions of opposite charge from the surfactant had enhanced charge-transfer rates. The results are qualitatively consistent with the kinetic effects of an adsorbed layer of ionic surfactant on the ODS electrodes.  相似文献   

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