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Specific refractive index increment (∂n/∂c) of polymers at 660 nm and 690 nm

机译:聚合物在660 nm和690 nm处的比折射率增量(∂n/∂c)

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摘要

The specific refractive index increment (∂n/∂c) is an essential datum for the accurate quantitation of molar mass averages and distributions (inter alia) of macromolecules when refractometry, static light scattering, and/or viscometry detection are coupled on-line to size-based separation techniques. The latter include methods such as size-exclusion and hydrodynamic chromatography, and asymmetric and hollow-fiber flow field-flow fractionation. The ∂n/∂c is also needed for accurate determination of the weight-average molar mass of polymers by off-line, batch-mode multi-angle static light scattering. However, not only does ∂n/∂c differ among chemical species, it also depends on experimental conditions such as solvent, temperature, and wavelength. For the last seventeen years, the author’s laboratories have measured the ∂n/∂c of a variety of natural and synthetic polymers, at both 690 nm and, more recently, 660 nm, under a variety of solvent and temperature conditions. In all cases, this has been done by off-line, batch-mode differential refractometry, not by assuming 100% analyte column recovery and 100% accurate peak integration. Results of these determinations are presented here, along with the relevant experimental data.
机译:当折光测定法,静态光散射法和/或粘度测定法在线耦合到质谱仪时,比折射率增量(∂n/∂c)是精确定量摩尔质量平均数和大分子分布(尤其是)的基本数据。基于大小的分离技术。后者包括诸如尺寸排阻和流体动力学色谱法以及不对称和中空纤维流场流分馏的方法。为了通过离线,批处理模式多角度静态光散射准确确定聚合物的重均摩尔质量,还需要∂n/∂c。但是,∂n/∂c不仅在化学物种之间有所不同,而且还取决于实验条件,例如溶剂,温度和波长。在过去的十七年中,作者的实验室在各种溶剂和温度条件下,分别在690 nm和最近的660 nm处测量了各种天然和合成聚合物的∂n/∂c。在所有情况下,这都是通过离线批量模式差示折光法完成的,而不是假设分析物色谱柱的回收率为100%和峰积分的准确度为100%。这些测定的结果以及相关的实验数据均在此处提供。

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