Shopova Siyka I, White Ian M, Sun Yuze, Zhu Hongying, Fan Xudong, Frye-Mason Greg, Thompson Aaron, Ja Shiou-jyh
Biological Engineering Department, University of Missouri-Columbia 240D Bond Life Sciences Center, 1201 East Rollins Street, Columbia, Missouri 65211, USA.
Anal Chem. 2008 Mar 15;80(6):2232-8. doi: 10.1021/ac702389x. Epub 2008 Feb 14.
We developed a novel on-column micro gas chromatography (microGC) detector using capillary based optical ring resonators (CBORRs). The CBORR is a thin-walled fused silica capillary with an inner diameter ranging from a few tens to a few hundreds of micrometers. The interior surface of the CBORR is coated with a layer of stationary phase for gas separation. The circular cross section of the CBORR forms a ring resonator and supports whispering gallery modes (WGMs) that circulate along the ring resonator circumference hundreds of times. The evanescent field extends into the core and is sensitive to the refractive index change induced by the interaction between the gas sample and the stationary phase. The WGM can be excited and monitored at any location along the CBORR by placing a tapered optical fiber against the CBORR, thus enabling on-column real-time detection. Rapid separation of both polar and nonpolar samples was demonstrated with subsecond detection speed. Theoretical work was also established to explain the CBORR detection mechanism. While low-nanogram detection limits are observed in these preliminary tests, many methods for improvements are under investigation. The CBORR is directly compatible with traditional capillary GC columns without any dead volumes. Therefore, the CBORR-based muGC is a very promising technology platform for rapid, sensitive, and portable analytical devices.
我们开发了一种使用基于毛细管的光学环形谐振器(CBORR)的新型柱上微气相色谱(microGC)检测器。CBORR是一种薄壁熔融石英毛细管,内径范围从几十微米到几百微米。CBORR的内表面涂有一层用于气体分离的固定相。CBORR的圆形横截面形成一个环形谐振器,并支持沿环形谐振器圆周循环数百次的回音壁模式(WGM)。倏逝场延伸到纤芯中,并对气体样品与固定相之间相互作用引起的折射率变化敏感。通过将锥形光纤靠在CBORR上,可以在CBORR沿线的任何位置激发和监测WGM,从而实现柱上实时检测。以亚秒级的检测速度证明了对极性和非极性样品的快速分离。还开展了理论工作来解释CBORR的检测机制。虽然在这些初步测试中观察到了低纳克级的检测限,但许多改进方法仍在研究中。CBORR可直接与传统毛细管GC柱兼容,没有任何死体积。因此,基于CBORR的微型气相色谱是用于快速、灵敏和便携式分析设备的非常有前景的技术平台。