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A study of the microstructure of CTAB/1-butanol/octane/ water system by PGSE-NMR and Cryo-TEM
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作者 XU Jian LI Ganzuo +2 位作者 ZHAI Limin SHEN Qiang ZHANG Zhiqiang 《Chinese Science Bulletin》 SCIE EI CAS 2001年第15期1272-1276,共5页
In this work, the effect of octane concentration on the phase behavior of CTAB/water/1-butanol system was studied by using pulsed field gradient spin-echo NMR measurements and freeze fracture electron microscopy (Cryo... In this work, the effect of octane concentration on the phase behavior of CTAB/water/1-butanol system was studied by using pulsed field gradient spin-echo NMR measurements and freeze fracture electron microscopy (Cryo-TEM and FFEM). When the octane concentration increases, the liquid crystalline phase is destabilized and a continuous single-phase microemulsion region from the water apex to the oil apex is formed. The conductivity behavior has a distinct percolative phenomenon, which indicates that the single-phase microemulsion is changed continuously from oil-in-water (o/w) structure via a bicontinuous structure to wa-ter-in-oil (w/o) structure. This result is consistent with those of the PGSE-NMR, Cryo-TEM, and FFEM. In the w/o region, the self-diffusion coefficient of water is relatively high ((1-6) ×1(T-10 m . s-1) due to the higher solubility of water in the continuous phase consisting of octane (10% by weight) and 1-butanol. The penetration of a large amount of octane molecules between 展开更多
关键词 CETYLTRIMETHYLAMMONIUM BROMIDE MICROSTRUCTURE CRYO-TEM PGSE-NMR FFEM.
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脉冲梯度场自旋回波NMR和TEM研究微乳液的微观结构 被引量:2
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作者 徐健 李干佐 +2 位作者 翟利民 沈强 张志强 《科学通报》 EI CAS CSCD 北大核心 2001年第6期466-470,共5页
研究了辛烷对CTAB/1-丁醇/水表面活性剂体系相态的影响, 随着辛烷浓度的增加, 液晶相变得不稳定, 当辛烷浓度大于10%以后, 液晶相消失, 得到从水顶角到油顶角的连续单相微乳液区, 而当辛烷浓度高于50%时, 则只在油顶角存在透明的微乳液... 研究了辛烷对CTAB/1-丁醇/水表面活性剂体系相态的影响, 随着辛烷浓度的增加, 液晶相变得不稳定, 当辛烷浓度大于10%以后, 液晶相消失, 得到从水顶角到油顶角的连续单相微乳液区, 而当辛烷浓度高于50%时, 则只在油顶角存在透明的微乳液区. 当辛烷的浓度为10%时, 其单相微乳液区的面积最大, 并通过电导测量、自扩散系数测试和冷冻透射电子显微镜成像, 研究了该微乳液区域的微观结构, 发现随水含量的增加, 微乳液的微观结构由W/O液滴结构经过双连续结构连续变化为O/W液滴结构. 同时, 还发现水在油相中较高的溶解度(13%~18.5%)导致水包油(O/W)微乳液中水的自扩散系数增高((1~6)×10-10 m2·s-1), 而辛烷插入表面活性剂的烷烃链之间造成辛烷的自扩散系数的降低. 展开更多
关键词 辛烷 NMR TEM 微孔液 微观结构 脉冲梯度场自旋回波 CTAB/1-J醇/水体系 自扩散系数
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