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对壬基酚聚氧乙烯醚(IgepalCO)系列表面活性剂,生成何种溶致液晶与其EO基团数n有关,而在何浓度范围内生成溶致液晶则与生成溶致液晶的最低水含量及最大水增溶量有关.EO基团数n小于10时,生成层状液晶,n大于10时则生成六角状液晶,层状液晶两亲双层内,水与表面活性剂的最低摩尔比rmin和最高摩尔比rmax随EO基团数n增加分别是非线型增加与线型增加,在IgepalCO520(n=5)中加入IgepalCO710(n=10.5),对层状液晶的生成无显著影响,在IgepalCO710中加入IgepalCO520,则对六角状液晶的生成产生显著影响,出现了六角状液晶向层状液晶的转变。 相似文献
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溶剂性质对DBS/C~1~0H~2~1OH/溶剂体系的相行为 与结构的影响 总被引:1,自引:0,他引:1
在DBS/C~1~0H~2~1OH/溶剂体系中,以甲酰胺、水或甘油为溶剂时,在一定浓度范围内能生成O/W,W/O微乳液和层状液晶。C~1~0H~2~1OH在各种溶剂的DBS胶束中的分配系数K均很高。以甲酰胺、水为溶剂时,DBS能在一定浓度范围内生成层状液晶,但以甘油为溶剂时,则不能生成层状液晶。C~1~0H~2~1OH的加入有助于层状液晶的生成,但过量的C~1~0H~2~1OH却使层状液晶失稳。在相同质量比C~1~0H~2~1OH/DBS下,按顺序H~2O,FA,Gly,层状液晶中溶剂的渗透率α降低,d~0值亦降低;以FA为溶剂时,表示其表观有序度的Δν值却较高;以水为溶剂时,Δν值却较低;以Gly为溶剂时,Δν具有中等值。不同溶剂层状液晶两亲双层内的分子取向与溶剂性质对层状液晶稳定性的影响相一致。 相似文献
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以铂微电极法测定了在SDS/n-C5H11OH/H2O溶致液晶中SDS(十二烷基硫酸钠)分子的扩散系数.结果表明,恒定质量比SDS/n-C5H11OH条件下,溶致液晶中SDS分子的扩散系数随体系中水含量的增加而增加;恒定质量比SDS/H2O,溶致液晶中SDS分子的扩散系数随正戊醇含量的增加而增加;恒定质量比H2O/n-C5H11OH ,溶致液晶中SDS分子的扩散系数随SDS含量的增加而降低.六角状液晶中SDS分子的扩散系数比层状液晶中SDS分子的扩散系数低约1个数量级,而比W/O、O/W胶束的扩散系数低3~5个数量级. 相似文献
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分别利用微乳液水热法和酸蒸气水热法合成了杂多蓝化合物ZrW1.7ⅥW0.3ⅤO7H0.3(OH)2·2H2O.XRD测定结果表明,该化合物与ZrMo2O7(OH)2·2H2O具有相同晶体结构类型.使用Rietveld方法对产物进行了结构精修,并计算出了键参数和键价.运用EPR技术测定了该化合物中W的价态,并利用XPS能谱测定了W/W的比例.利用价键和规则,指出ZrW1.7ⅥW0.3ⅤO7H0.3(OH)2·2H2O中的W—O3—H0.15存在羟基化现象,并对杂多蓝化合物的红外吸收光谱进行了指认. 相似文献
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分别利用微乳液水热法和酸蒸气水热法合成了杂多蓝化合物 Zr W 1 .7W 0 .3O7H0 .3( OH) 2 · 2 H2 O.XRD测定结果表明 ,该化合物与 Zr Mo2 O7( OH) 2 · 2 H2 O具有相同晶体结构类型 .使用 Rietveld方法对产物进行了结构精修 ,并计算出了键参数和键价 .运用 EPR技术测定了该化合物中 W的价态 ,并利用 XPS能谱测定了 W /W 的比例 .利用价键和规则 ,指出 Zr W 1 .7W 0 .3O7H0 .3( OH) 2 · 2 H2 O中的 W— O3— H0 .1 5存在羟基化现象 ,并对杂多蓝化合物的红外吸收光谱进行了指认 . 相似文献
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Triton X-100/C10H21OH/H2O体系微乳液与溶致液晶 总被引:1,自引:0,他引:1
关于离子型表面活性剂生成的微乳液与溶致液晶已有不少研究,非离子型表面活性剂生成的微乳液与港致液晶的应用正在引起人们的重视,但由于药物提纯的困难,对其物理化学性质的研究还不多见.本文以非离子表面活性剂TritonX-100/C10H21OH/H2O体系为例,研究了非离子型表面活性剂微乳液和溶致液晶的生成及其结构特性.1实验部分试剂ThitonX-100(Aldrich公司,分析纯)正癸醇(分析纯)、水为一次蒸馏水微乳液区域和层状液晶区域的确定方法及小角x射线衍射测定方法同文献,实验温度20±0.1℃.2结果与讨论2·IThtonX-100、CIOH… 相似文献
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Order character and lamellar structure of TritonX 100/n C10H21OH/H2O lamellar liquid crystal were investigated. Partial phase diagram of TritonX 100/C10H21OH/H2O was measured at 25℃ by the polarizing microscope, and lamellar structure of the lamellar liquid crystal was verified by the 2H NMR spectra. The ESR spin probe method was used to detect the changes in the lamellar liquid crystal. A stearic acid, 5 doxylstearic acid, was used as the spin probe. The values of hyperfine coupling constant and order parameter of lamellar liquid crystal in the phase diagram were calculated. The values of the hyperfine coupling constant with different composition were almost unchanged. It indicates that the micropolarity of the lamellar liquid crystal is very similar. The order parameter decreases with the increasing water content in lamellar liquid crystal. It can be explained by considering that: First, though the penetration is determined at the given weight ratio of C10H21OH to TritonX 100, the absolute water content penetrated into the amphiphile bilayer increases with the increasing of the water content. Second, the thickness of the solvent also increases, which makes the force between layers weaker. The results also showed that order parameter of lamellar liquid crystal increased with TritonX 100 content, which may be explained from the fact that the water content penetrated into the amphiphile bilayer decreases relatively and the molecules in the amphiphile bilayer are made tighten. The interlayer spacing of lamellar liquid crystal was determined by small angle X ray diffraction. The penetration ratio of water in the lamellar liquid crystal was calculated. It was about 50%. 相似文献
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In the present paper, we studied the interaction between n-dodecylammonium alpha-glutamate (GDA)/n-C5H11OH/H2O assemblies and methemoglobin by UV-vis spectroscopy, X-ray diffraction, electron spin resonance (ESR), rheology, and freeze-fractured transmission electron microscopy (FF-TEM). It is found that W/O microemulsion forms at a lower n-pentanol content and O/W microemulsion forms at a lower water content with the addition of methemoglobin. The existence of methemoglobin reduces the hexagonal liquid crystal region, while the lamellar liquid crystal region is little changed in the presence of methemoglobin. Moreover, methemoglobin and GDA/n-C5H11OH/H2O assemblies can affect their structures and properties and the change in behavior is dependent on the content of methemoglobin and the composition and structure of the GDA/n-C5H11OH/H2O system. The relationship among the changes in the structure and properties of GDA/n-C5H11OH/H2O assemblies, the content of methemoglobin, and the composition and structure of GDA/n-C5H11OH/H2O assemblies may provide some important theoretical information for elucidation of the interaction between methemoglobin and blood cell membrane and may also be helpful for the cure of some blood diseases. 相似文献
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