流变学
浊点
相图
水溶液
旋节分解
相(物质)
成核
材料科学
透射率
化学工程
热力学
化学
物理化学
有机化学
复合材料
工程类
物理
光电子学
作者
Sara A. Arvidson,Joseph Lott,John W. McAllister,J. Zhang,Frank S. Bates,Timothy P. Lodge,Robert L. Sammler,Yiluo Li,Meinolf Brackhagen
出处
期刊:Macromolecules
[American Chemical Society]
日期:2012-12-14
卷期号:46 (1): 300-309
被引量:143
摘要
Rheology and turbidity measurements were performed under similar thermal histories to probe the relationship between thermoreversible gelation and phase separation for a set of three methylcellulose (MC) materials with similar degrees of substitution (DS) and contrasting molecular weights after hydration in cold water. Frequency-independent loss tangents were used to identify the gel point (Tgel) in MC solutions well over the chain overlap concentration (c ≥ 10c*). Transmittance of 633 nm laser light through the solutions revealed that all MC solutions cloud upon gelling, with a relative transmittance of 86% closely associated with the gel point. The gelation temperature of MC solutions was found to decrease with increasing MC concentration and the results for all molecular weights superposed. Using gel and cloud points, a phase diagram was constructed which reveals that clear MC solutions transition directly into turbid gels. Frequency-independent storage moduli of fully developed MC gels scaled with φ2.3, consistent with theory and experiment of entangled systems. Gelation of MC has strong dependence on heating rate while the melting of the gel has little dependence on cooling rate, suggesting that thermogelation of MC proceeded by a nucleation and growth mechanism rather than spinodal decomposition.
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