首页> 外文期刊>Analytical chemistry >High-performance, static-coated silicon microfabricated columns for gas chromatography
【24h】

High-performance, static-coated silicon microfabricated columns for gas chromatography

机译:用于气相色谱的高性能,静态涂覆的硅微细加工柱

获取原文
获取原文并翻译 | 示例
       

摘要

A procedure is described for the preparation of high-performance etched silicon columns for gas chromatography. Rectangular channels, 150 mu m wide by 240 mu m deep are fabricated in silicon substrates by gas-phase reactive ion etching. A 0.1-0.2-mu m-thick film of dimethyl polysiloxane stationary phase is deposited on the channel walls by filling the channel with a dilute solution in 1:1 n-pentane and dichloromethane and pumping away the solvent. A thermally activated cross-linking agent is used for in situ cross-linking. A 3-m-long microfabricated column generated similar to 12 500 theoretical plates at optimal operating conditions using air as carrier gas. A kinetic model for the efficiency of rectangular cross-section columns is used to evaluate column performance. Results indicate an additional source of gas-phase dispersion beyond longitudinal diffusion and nonequilibrium effects, probably resulting from numerous turns in the gas flow path through the channel. The columns are thermally stable to at least 180 degrees C using air carrier gas. Temperature programming is demonstrated for the boiling point range from n-C-5 to n-C-12. A 3.0-m-long column heated at 10 degrees C/min obtains a peak capacity of over 100 peaks with a resolution of 1.18 and a separation time of similar to 500 s. With a 0.25-m-long column heated at 30 degrees C/min, a peak capacity of 28 peaks is obtained with a separation time of 150 s. Applications are shown for the analysis of air-phase petroleum hydrocarbons and the high-speed analysis of chemical warfare agent and explosive markers.
机译:描述了制备用于气相色谱法的高性能蚀刻硅柱的程序。通过气相反应离子刻蚀在硅基板上制造出150微米宽,240微米深的矩形通道。通过用在1:1正戊烷和二氯甲烷中的稀溶液填充通道并抽走溶剂,将0.1-0.2μm厚的二甲基聚硅氧烷固定相薄膜沉积在通道壁上。热活化的交联剂用于原位交联。使用空气作为载气,在最佳操作条件下,一个3米长的微型色谱柱可生成类似于12 500个理论塔板。矩形截面色谱柱效率的动力学模型用于评估色谱柱性能。结果表明,除了纵向扩散和非平衡效应外,还有气相扩散的另一来源,这可能是由于穿过通道的气流路径中的许多转向所致。使用空气载气,色谱柱在至少180摄氏度的温度下保持热稳定性。对温度编程的沸点范围从n-C-5到n-C-12进行了演示。以10摄氏度/分钟的速度加热的3.0米长的色谱柱获得了超过100个峰的峰容量,分离度为1.18,分离时间接近500 s。用0.25 m长的色谱柱以30℃/ min的速度加热时,在150 s的分离时间下可获得28个峰的峰容量。展示了在气相石油烃分析以及化学战剂和爆炸性标记物的高速分析中的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号