Seeley John V, Schimmel Nicolaas E, Seeley Stacy K
Oakland University, Department of Chemistry, Rochester, MI 48309, USA.
Oakland University, Department of Chemistry, Rochester, MI 48309, USA.
J Chromatogr A. 2018 Feb 9;1536:6-15. doi: 10.1016/j.chroma.2017.06.030. Epub 2017 Jun 13.
A fluidic device called the multi-mode modulator (MMM) has been developed for use as a comprehensive two-dimensional gas chromatography (GC x GC) modulator. The MMM can be employed in a wide range of capacities including as a traditional heart-cutting device, a low duty cycle GC x GC modulator, and a full transfer GC x GC modulator. The MMM is capable of producing narrow component pulses (widths <50ms) while operating at flows compatible with high resolution chromatography. The sample path of modulated components is confined to the interior of a joining capillary. The joining capillary dimensions and the position of the columns within the joining capillary can be optimized for the selected modulation mode. Furthermore, the joining capillary can be replaced easily and inexpensively if it becomes fouled due to sample matrix components or column bleed. The principles of operation of the MMM are described and its efficacy is demonstrated as a heart-cutting device and as a GC x GC modulator.
一种名为多模式调制器(MMM)的流体装置已被开发出来,用作综合二维气相色谱(GC×GC)调制器。MMM可用于多种容量范围,包括作为传统的中心切割装置、低占空比GC×GC调制器和全转移GC×GC调制器。MMM能够在与高分辨率色谱兼容的流速下运行时产生窄的组分脉冲(宽度<50毫秒)。被调制组分的样品路径被限制在连接毛细管的内部。连接毛细管的尺寸以及柱在连接毛细管内的位置可针对所选的调制模式进行优化。此外,如果连接毛细管因样品基质成分或柱流失而被污染,可以轻松且廉价地进行更换。本文描述了MMM的工作原理,并展示了其作为中心切割装置和GC×GC调制器的功效。