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首页> 外文期刊>Macromolecular chemistry and physics >Temperature and pressure dependence of the free volume in polyisobutylene from positron lifetime and pressure-volume-temperature experiments
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Temperature and pressure dependence of the free volume in polyisobutylene from positron lifetime and pressure-volume-temperature experiments

机译:从正电子寿命和压力-体积-温度实验看聚异丁烯中自由体积的温度和压力依赖性

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摘要

The microstructure of the free volume and its temperature and pressure dependence in PIB were studied by PVT experiments and PALS. Employing the Simha-Somcynsky equation of state, the hole-free volume fraction h and the specific free and occupied volumes, V-f=hV and V-occ=(1-h)V, respectively, and their expansivity and compressibility were calculated. From the PALS spectra analyzed using the LT9.0 software, the hole size distribution, the mean hole size < v(h)> and mean dispersion sigma(h) were calculated. From a comparison of < v(h)> with V-f, the hole density N'(h) was obtained. It was found that PIB shows an unusual thermal expansion with glass-like transitions at 210 K and 290 K (at 0 MPa). A similar behavior is observed for tan delta. It was found that at 296 K, < v(h)> decreases exponentially from 80 angstrom(3) at 0.1 MPa to the extremely low value of 10 angstrom(3) at 1300 MPa. Starting from a fluctuation approach, the free-volume fluctuations and the characteristic length scale (xi) of dynamic heterogeneity of structural relaxation were estimated from sigma(h). It was found that xi increases from approximate to 1.5 nm to approximate to 1.9 nm when the temperature decreases from 293 K to the glass transition temperature T-g=207 K (at 0 MPa) or the pressure increases from 0.1 MPa to 200 MPa (at 296 K).
机译:通过PVT实验和PALS研究了PIB中自由体积的微观结构及其温度和压力依赖性。利用Simha-Somcynsky状态方程,分别计算了无孔体积分数h和比自由体积和占有体积V-f = hV和V-occ =(1-h)V,并计算了它们的膨胀性和可压缩性。从使用LT9.0软件分析的PALS光谱中,计算出孔尺寸分布,平均孔尺寸和平均色散sigma(h)。通过将与V-f进行比较,获得空穴密度N'(h)。发现PIB在210 K和290 K(0 MPa)下显示出不寻常的热膨胀,并具有玻璃状转变。对于tanδ观察到类似的行为。发现在296 K时,从0.1 MPa时的80埃(3)指数下降到1300 MPa时的10埃(3)的极低值。从涨落方法开始,根据sigma(h)估算结构松弛的动态异质性的自由体积涨落和特征长度尺度(xi)。已发现,当温度从293 K降低到玻璃化转变温度Tg = 207 K(在0 MPa时)或压力从0.1 MPa升高到200 MPa(在296时),xi从大约1.5 nm增加到大约1.9 nm。 K)。

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