Vrije Universiteit Brussel, Department of Chemical Engineering, Elsene, Belgium.
Anal Chem. 2011 Sep 15;83(18):7053-60. doi: 10.1021/ac201207t. Epub 2011 Aug 18.
We report on a proof-of-principle experiment with a novel thermal modulation device with potential use in two-dimensional liquid chromatography (LC × LC) systems. It is based on the thermal desorption concept used in two-dimensional gas chromatography (GC × GC) systems. Preconcentration of neutral analytes eluting from the first dimension column is performed in a capillary "trap" column packed with highly retentive porous graphitic carbon particles, placed in an aluminum low-thermal-mass LC heating sleeve. Remobilization of the trapped analytes is achieved by rapidly heating the trap column, by applying temperature ramps up to +1200 °C/min. Compared to the nonmodulated signal, the presented thermal modulator yielded narrow peaks, and a concentration enhancement factor up to 18 was achieved. With a thermally modulated LC separation of an epoxy resin, it is shown that when the thermal modulation is applied periodically, the trapped and concentrated molecules can be released periodically and that the modulating interface can both serve as a preconcentration device and as an injector for the second dimension column of an LC × LC setup. Because of the thermal modulation, a high-molecular-weight epoxy resin could be adequately separated and the different fractions were identified with a GPC analysis, as well as an offline second dimension LC analysis.
我们报告了一项原理验证实验,该实验使用了一种新型的热调制装置,该装置有可能用于二维液相色谱(LC×LC)系统。它基于二维气相色谱(GC×GC)系统中使用的热解吸概念。从第一维柱洗脱的中性分析物在填充有高保留多孔石墨化碳颗粒的毛细管“捕集”柱中进行预浓缩,该捕集柱放置在低导热质量的铝 LC 加热套中。通过快速加热捕集柱,以高达+1200°C/min 的温度斜坡来实现被捕获的分析物的重新移动。与非调制信号相比,所提出的热调制器产生了较窄的峰,并且实现了高达 18 的浓度增强因子。通过对环氧树脂的热调制 LC 分离,表明当周期性地施加热调制时,可以周期性地释放被捕获和浓缩的分子,并且调制接口既可以用作预浓缩装置,也可以用作 LC×LC 装置的第二维柱的进样器。由于热调制,可以充分分离高分子量环氧树脂,并用 GPC 分析以及离线二维 LC 分析来鉴定不同的馏分。