Molecular motions in crystalline and mesomorphic forms of poly(diethylsiloxane)

V. M. Litvinov, V. Macho, H. W. Spiess
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引用次数: 12

Abstract

Molecular motions in low molar mass (46200 g mol—1) poly(diethylsiloxane) (PDES) are studied by 2H NMR. From DSC measurements the existence of the crystalline phases α1, β1 and α2, β2, as well as a pronounced mesogenic phase αm, is clearly established. Based upon calculations of averaged field gradient tensors based on cone models a detailed motional analysis in the different phases has been conducted. At low temperatures the only motion present besides methyl rotation are librations of the ethyl groups with amplitudes below 25°. The motion in the conformational disordered phase is characterized by conformational changes within the side chains, accompanied by occasional rotations through angles larger than 70° within the backbone. The flexibility of the ethyl groups, however, is limited by steric hindrance, prohibiting a full rotation. This situation is observed also in the meso phase where there is an additional rotational degree of freedom around the main chain axis.

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聚二乙基硅氧烷晶体和亚晶形态的分子运动
用2H核磁共振研究了低摩尔质量(46200 g mol-1)聚二乙基硅氧烷(PDES)的分子运动。通过DSC测量,可以清楚地确定α1, β1和α2, β2的结晶相,以及明显的介生相αm的存在。在计算基于锥模型的平均场梯度张量的基础上,对不同阶段的运动进行了详细的分析。在低温下,除了甲基旋转之外,唯一存在的运动是振幅低于25°的乙基的振动。构象无序相的运动以侧链内的构象变化为特征,并伴有偶尔的主链内大于70°的旋转。然而,乙基的柔韧性受到位阻的限制,不能完全旋转。这种情况也可以在中间相中观察到,在中间相中,围绕主链轴有一个额外的旋转自由度。
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