Dielectric and viscoelastic relaxation in dilute solutions of some non-Gaussian chains

S. Dev, R. Lochhead, A. North
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引用次数: 17

Abstract

Dielectric and viscoelastic measurements have been made on dilute solutions of poly(butylisocyanate). The measurements confirm that the molecules are predominantly rod-like in hydrodynamic behaviour. The end-over-end rotation times obtained from both sets of observations have been analyzed by three methods. The monomer projection length along the major axis cannot be evaluated independently of the value chosen for the length-to-thickness ratio, but it is probably less than 1.1 A and greater than 0.6 A. Application of the Kratky-Porod model to molecules for which the chain length is less than the persistence length must be treated with caution. For poly(butylisocyanate) the persistence length obtained from dilute solutions is 230 monomer units, although extrapolation of a wider concentration range to infinite dilution yields a value of 400 monomer units. Concentration has a marked effect on chain stiffness parameters (increasing apparent cylinder radii or decreasing persistence lengths) which is explained in terms of side-by-side dipole association.The dielectric measurements of Phillips 4 made on a variety of samples of poly(N-vinyl carbazole) have been analyzed using equations suitable for rod-like or stiff-coil polymers. For molecular weights above 50,000 the molecules are coil-like with a Kratky-Porod persistence length of 250 monomer units. Shorter chains are rod-like in which the projection length of each monomer unit along the rod is roughly ⅔ the monomer length. This suggests that the short chains (8-20 monomer units) adopt a semicircular are outline. Both polymers show increasing departures (in both the dielectric and the viscoelastic parameters) from rod-like behaviour as the temperature is raised. The change is continuous through room temperature so that there is no reason for assigning a perfect structure (helical or otherwise) to solutions at these temperatures. The experimental data do not, generally, allow sensible treatment using number average molecular weights, so that weight (or perhaps even higher) averages must be used for heterodisperse samples.
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非高斯链稀溶液中的介电弛豫和粘弹性弛豫
对聚丁基异氰酸酯稀溶液进行了介电和粘弹性测量。测量结果证实,这些分子在流体动力学行为上主要呈棒状。通过三种方法对两组观测得到的端对端旋转时间进行了分析。单体沿长轴的投影长度不能独立于所选的长厚比值进行评估,但它可能小于1.1 A,大于0.6 A。krratky - porod模型应用于链长度小于持续长度的分子时必须谨慎对待。对于聚丁基异氰酸酯,从稀释溶液中获得的持续长度为230个单体单位,尽管外推更宽的浓度范围到无限稀释的值为400个单体单位。浓度对链刚度参数(增加表观圆柱半径或减少持续长度)有显著影响,这是用并排偶极子关联来解释的。利用适用于棒状或硬圈状聚合物的方程,对多种聚(n -乙烯基咔唑)样品的菲利普斯4介电测量进行了分析。对于分子量大于50,000的分子,分子呈卷曲状,具有250个单体单位的克拉特基-孔长度。较短的链是棒状的,其中每个单体单元沿棒状的投影长度约为单体长度的2 / 3。这表明短链(8-20个单体单元)采用半圆形的外轮廓。随着温度的升高,这两种聚合物(在介电和粘弹性参数上)都显示出越来越偏离棒状行为。这种变化在室温下是连续的,因此没有理由在这些温度下为溶液分配一个完美的结构(螺旋或其他)。通常,实验数据不允许使用数平均分子量进行合理的处理,因此必须对异分散样品使用重量(甚至更高)平均值。
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