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国家自然科学基金(51003093)

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纳米层状硅酸盐对聚甲基丙烯酸甲酯/聚乙酸乙烯酯共混物相分离行为的影响
<正>以具有低临界共溶温度(LCST)的聚甲基丙烯酸甲酯/聚乙酸乙烯酯(PMMA/PVAc)共混物/纳米层状硅酸盐三元纳米复合体系为研究对象,采用小角激光光散射方法考察纳米层状硅酸盐对二元共混物相分离行为的影响。在升温相...
赵继石左敏郑强
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INFLUENCE OF CLAY ON THE MORPHOLOGY AND PHASE SEPARATION BEHAVIOR OF POLY(METHYL METHACRYLATE)/POLY(STYRENE-co-ACRYLONITRILE) BLENDS
2013年
The effect of clay on the morphology and phase-separation behavior of poly(methyl methacrylate)/poly(styreneco-acrylonitrile)(PMMA/SAN) blends and the variation of clay dispersion have been investigated. With the evolution of phase separation in PMMA/SAN, most of the clays are first located at the boundaries between PMMA and SAN, and then gradually move to the PMMA-rich domain, owing to the affinity of clay to PMMA. The introduction of clay causes the increase of binodal and spinodal temperatures of PMMA/SAN and enlarges their metastable region, indicating the phase stabilizing effect of clay on the matrix. But the influence of clay on the cloud points obviously depends on the composition of PMMA/SAN. The selective adsorption of PMMA on the clay results in the difference between the composition of surface layer and that of polymer matrix. Hence, the clay plays the role of an agent changing the conditions of phase structure formation.
De-zheng Pang左敏Ji-shi Zhao郑强
Morphology Evolution,Conductive and Viscoelastic Behaviors of Chemically Reduced Graphene Oxide Filled Poly(methyl methacrylate)/Poly(styrene-co-acrylonitrile) Nanocomposites during Annealing被引量:1
2015年
The effect of chemically reduced graphene oxide(CRGO) on the phase separation behavior of poly(methyl methacrylate)/poly(styrene-co-acrylonitrile)(PMMA/SAN) blends and the simultaneous response of rheological and conductive behavior of PMMA/SAN/CRGO nanocomposites upon annealing above the phase-separation temperatures were investigated.The introduction of CRGO causes the decrease of binodal temperature and the increase of spinodal temperature for PMMA/SAN blends and then enlarges their metastable regime.During annealing,the well-dispersed CRGO in the homogeneous blend matrix tends to be selectively located in the SAN-rich phase with the evolution of phase separation and then the CRGO further agglomerates effectively in the SAN-rich phase to form the conductive pathway.Thermal-induced dynamic percolation is observed for both the resistivity ρ and dynamic storage modulus G' as a function of annealing time.The resistivity variation is ascribed to the agglomeration of CRGO in the SAN-rich phase,while the modulus evolution is attributed to the combined contribution of phase separation for blend matrix and the agglomeration of CRGO in the SAN-rich phase.
Chao-ying Lin左敏Hui-hui LiTing LiuQiang Zheng
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