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首页> 外文期刊>Journal of Colloid and Interface Science >AQUEOUS SOLUTIONS OF ETHYL (HYDROXYETHYL) CELLULOSE AND HYDROPHOBIC MODIFIED ETHYL (HYDROXYETHYL) CELLULOSE POLYMER - DYNAMIC SURFACE TENSION MEASUREMENTS
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AQUEOUS SOLUTIONS OF ETHYL (HYDROXYETHYL) CELLULOSE AND HYDROPHOBIC MODIFIED ETHYL (HYDROXYETHYL) CELLULOSE POLYMER - DYNAMIC SURFACE TENSION MEASUREMENTS

机译:乙基(羟乙基)纤维素水溶液和疏水改性的乙基(羟乙基)纤维素聚合物-动态表面张力测量

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The dynamic surface tension of aqueous solutions of ethyl (hydroxyethyl) cellulose (EHEC) and hydrophobic modified ethyl (hydroxyethyl) cellulose (HM-EHEC) were determined using the maximum bubble pressure method. Values were monitored over surface lifetimes ranging from 0.15 to 2.5 s (after dead time corrections). In the low concentration range (<100 ppm) HM-EHEC was shown to be more surface active, and the presence of salt (0.1 M) was shown to increase the surface activity of both polymer systems. The results were compared with surface tension measurements carried out over longer time scales, determined using the du Nouy ring technique. From these results, isotherms were constructed relating surface tension to surface aging time. Although the results could not be directly correlated to interfacial diffusion models, the isotherms were found to be comparable to previous data reported for lower-molecular-weight poly(oxyethylene ether) surfactants and a higher-molecular-weight EHEC polymer determined using the pendant drop technique. Essentially, the isotherms could be divided into distinct regions: induction period, fast fall region where surface coverage occurs fairly rapidly, and finally the meso-equilibrium region. From the Gibbs equation, the number of segments of polymer per unit surface area at saturated adsorption levels was calculated over regions of different aging times, and the results are discussed in terms of configuration changes of the polymer at the interface. (C) 1997 Academic Press. [References: 23]
机译:使用最大气泡压力法测定乙基(羟乙基)纤维素(EHEC)和疏水改性的乙基(羟乙基)纤维素(HM-EHEC)水溶液的动态表面张力。在0.15到2.5 s的表面寿命(在停滞时间校正后)范围内监测值。在低浓度范围(<100 ppm)下,HM-EHEC被证明具有更高的表面活性,盐(0.1 M)的存在被证明可以提高两种聚合物体系的表面活性。将结果与使用du Nouy环技术测定的较长时间范围内进行的表面张力测量进行了比较。根据这些结果,建立了将表面张力与表面老化时间相关联的等温线。尽管结果不能与界面扩散模型直接相关,但发现等温线与先前报道的较低分子量的聚(氧乙烯醚)表面活性剂和较高分子量的EHEC聚合物的悬垂滴度相当。技术。从本质上讲,等温线可以划分为不同的区域:诱导期,表面覆盖相当迅速地发生的快速下降区域,以及中观平衡区域。根据吉布斯方程,在不同老化时间的区域上,计算了饱和吸附水平下每单位表面积聚合物的链段数,并根据界面处聚合物的构型变化讨论了结果。 (C)1997学术出版社。 [参考:23]

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