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Portable comprehensive two-dimensional micro-gas chromatography using an integrated flow-restricted pneumatic modulator.

Xiaheng HuangMaxwell Wei-Hao LiWenzhe ZangXiaolu HuangAnjali Devi SivakumarRuchi SharmaXudong Fan
Published in: Microsystems & nanoengineering (2022)
Two-dimensional (2D) gas chromatography (GC) provides enhanced vapor separation capabilities in contrast to conventional one-dimensional GC and is useful for the analysis of highly complex chemical samples. We developed a microfabricated flow-restricted pneumatic modulator (FRPM) for portable comprehensive 2D micro-GC (μGC), which enables rapid 2 D injection and separation without compromising the 1 D separation speed and eluent peak profiles. 2 D injection characteristics such as injection peak width and peak height were fully characterized by using flow-through micro-photoionization detectors (μPIDs) at the FRPM inlet and outlet. A 2 D injection peak width of ~25 ms could be achieved with a 2 D/ 1 D flow rate ratio over 10. The FRPM was further integrated with a 0.5-m long 2 D μcolumn on the same chip, and its performance was characterized. Finally, we developed an automated portable comprehensive 2D μGC consisting of a 10 m OV-1 1 D μcolumn, an integrated FRPM with a built-in 0.5 m polyethylene glycol 2 D μcolumn, and two μPIDs. Rapid separation of 40 volatile organic compounds in ~5 min was demonstrated. A hybrid 2D contour plot was constructed by using both 1 D and 2 D chromatograms obtained with the two μPIDs at the end of the 1 D and 2 D μcolumns, which was enabled by the presence of the flow resistor in the FRPM.
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