Dow Deutschland Anlagen GmbH, Core R&D, Analytical Sciences, 21677 Stade, Germany.
Dow Deutschland Anlagen GmbH, Core R&D, Analytical Sciences, 21677 Stade, Germany.
J Chromatogr A. 2018 Aug 10;1562:78-86. doi: 10.1016/j.chroma.2018.05.059. Epub 2018 May 28.
A new methodology is presented for two-dimensional liquid chromatography (2D-LC) separations of polymers. Active solvent modulation (ASM) was evaluated in its effectiveness to enhance solvent compatibility for both separation dimensions. As an example the determination of target compounds in epoxy resins was used. Ultra-high pressure size-exclusion chromatography was applied in the first dimension using THF as the solvent. The second dimension separation was operated in reversed-phase mode using an acetonitrile/water gradient. ASM prevents sample breakthrough in the second dimension and produces chromatograms that are of great peak shape and high resolution. It enables very sensitive determination of target components down to the low ppm level. The resulting high-speed 2D-LC method (10 min analysis time) showed good linearity (R > 0.9995) and reproducibility (as low as 0.3-0.7% peak area RSD). ASM was also applied in comprehensive 2D-LC (SECxLC) mode for characterization of molecular weight and chemical composition distribution of a polymer blend consisting of epoxy novolac and phenol novolac. The SECxLC separation was executed at short run times (20 min). ASM technology can markedly enhance productivity in 2D-LC analysis for many complex sample matrices.
提出了一种用于二维液相色谱(2D-LC)分离聚合物的新方法。评价了活性溶剂调制(ASM)在增强两个分离维度的溶剂兼容性方面的有效性。以环氧树脂中目标化合物的测定为例。在第一维中使用 THF 作为溶剂进行超高压尺寸排阻色谱法。第二维分离在反相模式下使用乙腈/水梯度进行。ASM 防止了样品在第二维中的穿透,并产生了具有良好峰形和高分辨率的色谱图。它能够非常灵敏地测定目标成分,低至 ppm 级。所得的高速 2D-LC 方法(10 分钟分析时间)表现出良好的线性(R>0.9995)和重现性(低至 0.3-0.7%峰面积 RSD)。ASM 还应用于综合二维液相色谱(SECxLC)模式,用于表征由环氧树脂 novolac 和苯酚 novolac 组成的聚合物共混物的分子量和化学组成分布。SECxLC 分离在短运行时间(20 分钟)内完成。ASM 技术可以显著提高许多复杂样品基质的 2D-LC 分析的生产力。