Cardiff School of Engineering, Cardiff University, 1-5 The Parade, Cardiff CF24 3AA, UK.
J Chromatogr A. 2011 Apr 15;1218(15):1983-7. doi: 10.1016/j.chroma.2010.11.086. Epub 2010 Dec 9.
We report the first development of a novel, planar, microfluidic, graphitic carbon separations column utilizing an array of graphitic micropillars of diamond cross-section as the chromatographic stationary phase. 795 nm femtosecond laser ablation was employed to subtractively machine fluidic architectures and a micropillared array in a planar, graphitic substrate as a monolithic structure. A sample injector was integrated on-chip, together with fluid-flow distribution architectures to minimize band-broadening and ensure sample equi-distribution across the micro-pillared column width. The separations chip was interfaced directly to the ESI probe of a Thermofisher Surveyor mass spectrometer, enabling the detection of test-mixture analytes following their differential retention on the micro-pillared graphitic column, thus demonstrating the exciting potential of this novel separations format. Importantly, unlike porous, graphitic microspheres, the temperature and pressure resilience of the microfluidic device potentially enables use in subcritical H(2)O chromatography.
我们首次开发了一种新颖的平面微流控石墨碳分离柱,利用金刚石截面的石墨微柱阵列作为色谱固定相。795nm 飞秒激光烧蚀用于减去加工流道结构和平面石墨基底中的微柱阵列,形成整体结构。芯片上集成了进样器,以及流体分布结构,以最小化带宽展宽并确保样品在微柱列宽上均匀分布。分离芯片直接与 ThermoFisher Surveyor 质谱仪的 ESI 探头连接,能够在微柱石墨柱上进行差分保留后检测测试混合物分析物,从而展示了这种新型分离格式的令人兴奋的潜力。重要的是,与多孔石墨微球不同,微流控装置的温度和压力弹性可能使其能够用于亚临界 H2O 色谱。