首页> 外文期刊>Rheologica Acta >Thermorheological properties near the glass transition of oligomeric poly(methyl methacrylate) blended with acrylic polyhedral oligomeric silsesquioxane nanocages
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Thermorheological properties near the glass transition of oligomeric poly(methyl methacrylate) blended with acrylic polyhedral oligomeric silsesquioxane nanocages

机译:低聚聚(甲基丙烯酸甲酯)与丙烯酸多面体低聚倍半硅氧烷纳米笼罩共混物的玻璃化转变附近的热流变性

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摘要

Two distinct oligomeric species of similar mass and chemical functionality (M w≈2,000 g/mol), one a linear methyl methacrylate oligomer (radius of gyration R g≈1.1 nm) and the other a hybrid organic–inorganic polyhedral silsesquioxane nanocage (methacryl-POSS, r≈1.0 nm), were subjected to thermal and rheological tests to compare the behaviors of these geometrically dissimilar molecules over the entire composition range. The glass transition temperatures of the blends varied monotonically between the glass transition temperatures of the pure oligomer (T g=−47.3°C) and the pure POSS (T g=−61.0°C). Blends containing high POSS contents (with volume fraction φ POSS≥0.90) exhibited enhanced enthalpy relaxation in differential scanning calorimetry (DSC) measurements, and the degree of enthalpy relaxation was used to calculate the kinetic fragility indices m of the oligomeric MMA (m=59) and the POSS (m=74). The temperature dependences of the viscosities were fitted by the free-volume based Williams–Landel–Ferry (WLF) and Vogel–Fulcher–Tammann (VFT) framework and a dynamic scaling relation. The calculated values of the fragility from the WLF–VFT fits were similar for the POSS (m=82) and for the oligomer (m=76), and the dynamic scaling exponent was similar for the oligomeric MMA and the POSS. Within the range of known fragilities for glass-forming liquids, the temperature dependence of the viscosity was found to be similarly fragile for the two species. The difference in shape of the nanocages and oligomer chains is unimportant in controlling the glass-forming properties of the blends at low volume fractions (φ POSS<0.20). However, at higher volume fractions, adjacent POSS cages begin to crowd each other, leading to an increase in the fractional free volume at the glass transition temperature and the observed enhanced enthalpy relaxation in DSC.
机译:两种具有相似质量和化学官能度(M w ≈2,000g / mol)的低聚物,一种是线性甲基丙烯酸甲酯低聚物(回转半径R g ≈1.1nm),另一种是杂化有机物对无机多面体倍半硅氧烷纳米笼(甲基丙烯酸-POSS,r≈1.0nm)进行了热和流变测试,以比较这些几何上不同的分子在整个组成范围内的行为。共混物的玻璃化转变温度在纯低聚物的玻璃化转变温度(T g =-47.3°C)和纯POSS(T g =-61.0°C)之间单调变化。 POSS含量高(体积分数φPOSS ≥0.90)的共混物在差示扫描量热法(DSC)测量中表现出增强的焓弛豫,并且将焓弛豫度用于计算低聚MMA的动力学脆性指数m (m = 59)和POSS(m = 74)。粘度的温度依赖性通过自由体积的Williams-Landel-Ferry(WLF)和Vogel-Fulcher-Tammann(VFT)框架以及动态缩放关系进行拟合。 WLF-VFT拟合的易碎性计算值对于POSS(m = 82)和低聚物(m = 76)相似,而低聚MMA和POSS的动态缩放指数相似。在已知的用于形成玻璃的液体的脆性范围内,对于两种物质,粘度的温度依赖性也同样脆弱。纳米笼和低聚物链的形状差异对于控制低体积分数(φPOSS <0.20)的共混物的玻璃形成性能而言并不重要。但是,在较高的体积分数下,相邻的POSS笼子开始相互拥挤,导致玻璃化转变温度下的自由体积分数增加,并且在DSC中观察到增强的焓弛豫。

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