Department of Biological Engineering 240D Bond Life Sciences Center, University of Missouri, 1201 E Rollins Street, Columbia, Missouri 65211, USA.
Analyst. 2010 Jan;135(1):165-71. doi: 10.1039/b917154a. Epub 2009 Nov 3.
We demonstrated a novel tandem-column micro-gas chromatography (microGC) based on optofluidic ring resonator (OFRR). The OFRR is a thin-walled fused silica capillary whose interior surface is coated with a polymeric stationary phase. The circular cross section of the OFRR forms the micro-ring resonator and supports whispering gallery modes (WGMs). Via tapered optical fibers in contact with the OFRR, the WGM can be excited externally at any positions along the OFRR capillary, thus enabling multi-point, on-column, real-time detection of vapor molecules flowing through the OFRR. In the present OFRR-based tandem-column-based microGC implementation, a 180 cm long conventional GC column coated with a nonpolar stationary phase was followed by a relatively short OFRR column coated with a polar phase. Two detection positions, one at the inlet of the OFRR and the other a few centimeters downstream, were used to monitor the separation achieved by the first and the second column, respectively. Owing to the multi-point on-column detection that provides complementary retention time information on each chemical compound, co-eluted analytes can be well separated and identified on at least one detection channel and no modulation is needed at the interface of tandem columns. Separation and detection of twelve analytes with various volatilities and polarities within four minutes were demonstrated. In addition, the chromatograms obtained from three different locations along the OFRR column demonstrated the system's capability of on-column monitoring of the separation process for the target analyte in a vapor mixture. Our results will lead to the development of a rapid, simple, and portable microGC system with significantly improved selectivity and chemical identification capabilities.
我们展示了一种基于光流控环形谐振器(OFRR)的新型串联柱微气相色谱(microGC)。OFRR 是一种薄壁熔融石英毛细管,其内表面涂有聚合物固定相。OFRR 的圆形横截面形成微环谐振器,并支持 whispering gallery modes(WGMs)。通过与 OFRR 接触的锥形光纤,可以在 OFRR 毛细管的任何位置外部激发 WGM,从而实现流经 OFRR 的蒸气分子的多点、柱上、实时检测。在目前基于 OFRR 的串联柱微 GC 实现中,180 厘米长的涂有非极性固定相的常规 GC 柱后面是相对较短的涂有极性相的 OFRR 柱。两个检测位置,一个在 OFRR 的入口处,另一个在几厘米的下游处,分别用于监测第一柱和第二柱实现的分离。由于多点柱上检测提供了每个化合物的互补保留时间信息,因此共洗脱的分析物可以在至少一个检测通道中得到很好的分离和识别,并且不需要在串联柱的接口处进行调制。在四分钟内演示了十二种具有不同挥发性和极性的分析物的分离和检测。此外,从 OFRR 柱的三个不同位置获得的色谱图证明了该系统在蒸气混合物中对目标分析物的分离过程进行柱上监测的能力。我们的结果将导致开发一种快速、简单、便携式的微 GC 系统,具有显著提高的选择性和化学识别能力。