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1.
以卵磷脂为表面活性剂,正丙醇为助表面活性剂,肉豆蔻酸异丙酯(IPM)为油相,配制成W/O型微乳。并通过浊点法、电导法、动态光散射法(DLS)以及差示扫描量热法(DSC)研究了微乳相结构随含水量的变化。对于选定配比微乳,浊点法在含水量超过10.71%时变浑浊;电导率在含水量达到3.85%之前增长缓慢,之后快速增大,含水量超过10.71%时电导率下降;DLS显示微乳粒径随含水量先减小后增大,其转折点在5.66%,而含水量超过10.71%后粒径突增3个数量级;DSC曲线在含水量超过3.85%后出现水的结晶峰,且随含水量的增大峰位往高温方向平移,同时峰面积增大。当含水量达到11.5%时出现两水峰叠加。研究表明含水量在3.85%~5.66%范围内属于W/O向双连续相转变的过程,而含水量10.71%则是体系发生相分离的临界点。  相似文献   

2.
采用滴加法和电导率法绘制了十二烷基硫酸钠(SDS)/正丁醇/油相(正辛醇、正辛烷、正庚烷、正己烷)/水四组分微乳体系的拟三元相图。以O/W型微乳区域大小为指标,考察不同油相、表面活性剂与助表面活性剂的质量比对微乳形成的影响,并通过测定电导率、相对粘度以及表面张力等物理化学参数,考察了微乳体系的相行为及特性。根据得到的微乳体系相图,进行色谱条件优化,建立了快速、稳定的测定阿莫西林舒巴坦匹酯片剂中阿莫西林与舒巴坦匹酯二组分含量的方法,结果显示此微乳分离系统有较好的色谱适用性及方法可行性。  相似文献   

3.
倪鹏a 侯万国 a  b 《中国化学》2008,26(11):1985-1990
通常, 微乳液一般由四个组分构成:水相、油相、表面活性剂和助表面活性剂。本文报道了一种不含表面活性剂的微乳液体系(简称SFME),由呋喃甲醛(油相),水和乙醇三组分构成,不含传统的表面活性剂。对其相行为进行了研究,发现存在一个单相微乳液区和一个两相平衡区。采用电导率法和冷冻蚀刻电镜(FF-TEM)考察了单相区域中微乳液的微结构,结果表明可分为油包水(O/W)、双连续(BC)和水包油(W/O)三个区域。液滴直径介于30~80nm。  相似文献   

4.
倪鹏a 侯万国 a  b 《中国化学》2008,26(7):1335-1338
通常微乳液一般由四个组分构成:水相、油相、表面活性剂和助表面活性剂。本文报道了一种不含表面活性剂的微乳液体系(简称SFME),由呋喃甲醛(油相),水和N,N-二甲基甲酰胺(DMF)三组分构成,不含传统的表面活性剂。对其相行为进行了研究,发现存在一个单相微乳液区和一个两相平衡区。采用电导率法和冷冻蚀刻电镜(FF-TEM)考察了单相区域中微乳液的微结构,结果表明可分为油包水(O/W)、双连续(BC)和水包油(W/O)三个区域。液滴直径介于40-70nm。  相似文献   

5.
W/O型微乳法制备淀粉基纳米粒   总被引:8,自引:0,他引:8  
在正己烷、Span-60和NaOH水溶液的W/O型淀粉微乳液中,进行淀粉与环氧氯丙烷交联反应制备淀粉微球,用质量分数为1%的淀粉水浆液制备出微球的流体力学半径Rb为7.08—113nm,其中粒径不超过100nm的纳米粒在整个微粒体系中占69%,平均粒径为92.2nm。TEM和DLS结果表明,制得的微粒呈圆球形,且微粒的流体力学半径随淀粉水浆液浓度的增加而增大并分布变宽,淀粉水浆液的浓度低有利于淀粉基纳米粒的形成。  相似文献   

6.
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   

7.
邓少君  郑欧  刘金彦  赵剑曦 《化学学报》2007,65(13):212-1216
以FT-IR方法研究了水/C12-EOx-C12·2Br/正己醇/正庚烷形成的W/O微乳中水的状态.结果表明,其中的水存在4种状态,分别为阳离子头基结合水、反离子结合水、类似本体的水以及束缚在微乳栅栏层中的水.由解卷积技术分解FT-IR谱图,进而获得每个表面活性剂分子对应于这4种状态水分子的数目nN ,nBr-,nb和nf.随着水含量(W0)增加,nb急剧增大,nN 少许上升,而nf和nBr-维持不变,这说明微乳水核逐渐长大,且在所考察W0范围内,表面活性剂头基解离度保持不变.  相似文献   

8.
采用自制的功能离子液体1-(胺乙基)-3-丁基咪唑六氟磷酸盐([NH_2ebim][PF6]),制备了水/[NH_2ebim][PF_6]/Triton X-100/正丁醇/环己烷微乳液体系,通过动态光散射技术测定微乳液的粒径分布和分散相浓度,通过电导率仪测定体系电导率的变化,由这两种分析方法确定微乳液类型,微乳液类型被分为表面活性剂与水的互溶相包油型(O/S+W)和水包油型(O/W),并绘制出拟三元相图;通过耗散动力学(DPD)模拟不同水含量时微乳液体系中的聚集行为,模拟结果呈现出的微乳液类型与实验测定分析结果一致,证明了相图绘制的正确性;文中还考察了Triton X-100与正丁醇的比例对微乳液区域的影响,实验结果表明,随着Triton X-100与正丁醇的比例增加微乳液区域增大。  相似文献   

9.
本文对油酸-正丙醇-水三元体系的相行为进行了研究,表明可形成微乳液.由于体系中无传统表面活性剂,故所形成的微乳液为无表面活性剂微乳液.在反相微乳液区,固定正丙醇/油酸体积比(RP/O)为3∶5、1∶1和2∶1,考察了体系电导率(κ)随分散相体积分数(φd)的变化,结果表明κ随φd的增大先缓慢增加,后急剧增大,符合渗滤特...  相似文献   

10.
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   

11.
Electrical conductivity of fuel microemulsion composed of diesel, pentanol, water, and sucrose laurate as surfactant was investigated over a wide range of water contents varying from 0 to 90?wt% and temperature varying from 10°C to 50°C. Conductivity measurements were performed on samples, the composition of which lie along the one-phase channel using a conductivity meter. Activation energy of conduction flow was evaluated. The hydrodynamic radius as a function of temperature in the aqueous phase-rich region (90?wt%) was measured using the dynamic light scattering (DLS) method. The microstructure of the microemulsion was further investigated by NMR diffusometry by which the self-diffusion coefficients for water were determined at 25°C. Electrical conductivity increases with water content up to 40?wt% and the percolation threshold was observed, and then stabilizes between 40 and 80?wt% then decreases. Percolation threshold temperature at constant composition was monitored as 36°C for water contents below 80?wt% and as 34°C for water contents above that. As predicted by the conductivity measurements, the determined self-diffusion coefficients of water confirmed the structural transition from discrete W/O droplets to bi-continuous phase and finally to O/W droplet microemulsion.  相似文献   

12.
The thermal properties of a perfluoropolyether (PFPE) W/O microemulsion were investigated by Differential Scanning Calorimetry (DSC) both on freezing the liquid samples and upon their melting. PFPE systems as a function of increasing volume fraction (Φ=water+surfactant/total), were studied along a dilution line with a water/surfactant molar ratio W/S=11. The percolative nature of these systems emerged directly from the spreading of the exothermic peaks associated with the freezing of the dispersed phase. This behaviour was found to depend on whether the starting temperature of the DSC measure was at, below or above the percolative threshold temperature of the given sample. A low temperature 'needle-like' peak was found around 143 K, immediately after the glass transition due to the oil continuous phase. The low temperature peak was also present in other percolative, three-component microemulsions. The higher order phase transition at the percolation temperature was also evidenced. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

13.
Droplet sizes of oil/water (O/W) nanoemulsions prepared by the phase inversion temperature (PIT) method, in the water/C16E6/mineral oil system, have been compared with those given by a theoretical droplet model, which predicts a minimum droplet size. The results show that, when the phase inversion was started from either a single-phase microemulsion (D) or a two-phase W+D equilibrium, the resulting droplet sizes were close to those predicted by the model, whereas, when emulsification was started from W+D+O or from W+D+Lalpha (Lalpha = lamellar liquid crystal) equilibria, the difference between the measured and predicted values was much higher. The structural changes produced during the phase inversion process have been investigated by the 1H-PFGSE-NMR technique, monitoring the self-diffusion coefficients for each component as a function of temperature. The results have confirmed the transition from a bicontinuous D microemulsion at the hydrophile-lipophile balance (HLB) temperature to oil nanodroplet dispersion in water when it is cooled to lower temperatures.  相似文献   

14.
In the present contribution, results concerning the role of small amounts of water in the 1-butyl-3-methylimidazolium tetrafluoroborate (bmimBF4)-in-cyclohexane ionic liquid (IL) reverse microemulsions are reported. Dynamic light scattering (DLS) revealed that the size of microemulsion droplets decreased remarkably with increasing water content although water is often used as a polar component to swell reverse microemulsions. It was thus deduced that the number of microemulsion droplets was increased which was confirmed by conductivity measurements. The states of dissolved water were investigated by Fourier transform IR (FTIR) spectroscopic analysis showing that water molecules mainly act as bound water. 1H NMR along with two-dimensional rotating frame nuclear Overhauser effect (NOE) experiments (ROESY) further revealed that water molecules were mainly located in the periphery of the polar core of the microemulsion droplets and behave like a chock being inserted in the palisade layer of the droplet. This increased the curvature of the surfactant film at the IL/cyclohexane interface and thus led to the decrease of the microemulsion droplet size. The order of surfactant molecules arranged in the interface film was increased and thus induced a loss of entropy. Isothermal titration calorimetry (ITC) indicated that an enthalpy increase compensates for the loss of entropy during the process of microstructural transition.  相似文献   

15.
Green microemulsion suitable for oil-soluble pesticide delivery has been prepared using butyl acetate as oil phase, alkyl polyglycoside (APG) and linear alkylbenzene sulfonate (LAS) as mixed surfactant, and short-chain alcohol as cosurfactant. Pseudoternary phase diagrams were constructed to investigate the effects of APG and LAS mixing ratio, the chain length of the cosurfactant on the microemulsion phase behavior. A fully dilutable region run through the phase diagram can be observed and the structure of the microemulsion transformed from water-in-oil, bicontinuous to oil-in-water along with the addition of water according to the result of conductivity measurement. Based on the phase diagram, the avermectin microemulsion formulations were chosen from the fully dilutable line with the minimum surfactant-to-oil ratio. Dilution stability of the microemulsion with hard water was studied by dynamic light scattering (DLS), the microemulsion can maintain the uniform and homogeneous appearance although the droplet size increased after dilution. The diluted microemulsion were also studied by dynamic surface tension and dynamic contact angle, and the excellent wetting and spreading properties on hydrophobic surface was demonstrated.  相似文献   

16.
A simple low-energy two-step dilution process has been applied in oil/surfactant/water systems with pentaoxyethylene lauryl ether (C12E5), dodecyldimethylammonium bromide, sodium bis(2-ethylhexyl)sulfosuccinate, sodium n-dodecyl sulfate-pentanol, and hexadecyltrimethylammonium bromide-pentanol. Appropriate formulations were chosen for the concentrate to be diluted with water to generate oil-in-water (O/W) emulsions or nanoemulsions. For the system of decane/C12E5/water, bluish, transparent nanoemulsions having droplet radii of the order of 15 nm were formed, only when the initial concentrate was a bicontinuous microemulsion, whereas opaque emulsions were generated if the concentrate began in an emulsion-phase region. Nanoemulsions generated in the system decane/C12E5/water have been investigated both by dynamic light scattering (DLS) and contrast-variation small-angle neutron scattering (SANS). The SANS profiles show that nanodroplets exist as spherical core-shell (decane-C12E5) particles, which suffer essentially no structural change on dilution with water, at least for volume fractions phi down to 0.060. These results suggest that the nanoemulsion droplet structure is mainly controlled by the phase behavior of the initial concentrate and is largely independent of dilution. A discrepancy between apparent nanoemulsion droplet sizes was observed by comparing DLS and SANS data, which is consistent with long-range droplet interactions occurring outside of the SANS sensitivity range. These combined phase behavior, SANS, and DLS results suggest a different reason for the stability/instability of nanoemulsions compared with earlier studies, and here it is proposed that a general mechanism for nanoemulsion formation is homogeneous nucleation of oil droplets during the emulsification.  相似文献   

17.
The phase behavior of a system of n-butanol/n-octane/water/cationic gemini surfactant, alkanediyl-alpha,omega-(dimethydodecyl-ammonium bromide)(12-n-12, n=3,4,6), has been investigated by determination the pseudo-ternary phase diagrams. The results have shown that the spacer group of gemini surfactant has a great effect on the phase behavior. The longer the spacer group for the geminis, the more similar the geminis properties to the traditional ones. The mixing content of surfactant and cosurfactant needed for forming microemulsions increases with the geminis' spacer group. The study has also shown that the shorter spacer group of geminis is favorable for the formation of higher ordered surfactant aggregates such as liquid crystals. Furthermore, the microstructures of each region for the studied systems have been investigated by electrical conductivity measurements, UV-visible absorbance spectra of pyrene probe, and dynamic light scattering (DLS). All the results are in accord with each other. DLS makes use of the sensitivity of DLS to structural changes and as expected the hydrodynamic diameter of the microemulsion droplet changes as the transformation of microemulsion microstructures take place. Moreover, the spherical and network structures of microemulsion were further verified by freezing-etching TEM.  相似文献   

18.
十二烷基磺酸钠微乳状液结构转变的电化学研究   总被引:1,自引:0,他引:1  
制备了C12H25SO3Na-C4H9OH-C7H16-H2O四组分体系在km=W(C4H9OH)/W(C12H25SO3Na)=2时的拟三元相图。使用二茂铁和铁氰化钾作为电化学探针用循环伏安法测定了起始含油量为21%的无水混合物在滴加水过程中所形成的微太液的扩散系数。从扩散系数随含水量的变化确定微乳液的结构转变。含水量为20%-45%时生成油包水型微液;含水量大于65%时生成水包油型微乳液。当含水量在45%-65%之间时形成的是二连续型微乳液。电导率数据证实了循环伏安法的测定结果。  相似文献   

19.
20.
IntroductionDielectricrelaxationspectroscopy(DRS) possess esanimportantpositioninmodern physicochemicalanalysis .Dielectricmeasurementscanbedoneinsuchawidefrequencyrangeof 10 - 5— 10 11Hz ,makingitpossibletodetectallkindsofprocessesofvarioussys tems[1] .DRSisbasedonthepolarizationtheory ,in cludingdipolereorientation polarization ,interfacialpolarization ,ionicpolarizationandelectronicpolariza tion ,ofwhichinterfacialpolarizationis prevalent.Whenthereexistsaclearphaseinterface ,aninterfa c…  相似文献   

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