Zhao Guangqiang, Khin Cho Cho, Chen Shing Bor, Chen Bing-Hung
Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore 117576, Republic of Singapore.
J Phys Chem B. 2005 Jul 28;109(29):14198-204. doi: 10.1021/jp051955c.
Nonionic surfactant and temperature effects on the viscosity of hydrophobically modified hydroxyethyl cellulose (HMHEC) solutions are investigated experimentally. Weak shear thickening at intermediate shear rates takes place for HMHEC at moderate concentrations and becomes more significant at lower temperatures. While this amphiphilic polymer in surfactant-free solution does not turn turbid by heating to 95 degrees C, its mixture with nonionic surfactant shows a lower cloud point temperature than does a pure surfactant solution. For some mixture cases, phase separation takes place at temperatures as low as 2 degrees C. The drop of cloud point temperature is attributed to an additional attractive interaction between mixed micelles via chain bridging. With increasing temperature, the viscosity of an HMHEC-surfactant mixture in aqueous solution first decreases but then rises considerably until around the cloud point. The observed viscosity increase can be explained by the interchain association because of micellar aggregation.
实验研究了非离子表面活性剂和温度对疏水改性羟乙基纤维素(HMHEC)溶液粘度的影响。中等浓度的HMHEC在中等剪切速率下会出现弱剪切增稠现象,且在较低温度下更为显著。虽然这种两亲聚合物在无表面活性剂的溶液中加热到95摄氏度时不会变浑浊,但其与非离子表面活性剂的混合物的浊点温度比纯表面活性剂溶液低。在某些混合情况下,相分离在低至2摄氏度的温度下就会发生。浊点温度的下降归因于混合胶束之间通过链桥接产生的额外吸引相互作用。随着温度升高,HMHEC-表面活性剂混合物在水溶液中的粘度首先降低,但随后会大幅上升,直至接近浊点。观察到的粘度增加可以用胶束聚集导致的链间缔合来解释。