首页> 外文期刊>Lab on a chip >Direct optical emission spectroscopy of liquid analytes using an electrolyte as a cathode discharge source (ELCAD) integrated on a micro-fluidic chip
【24h】

Direct optical emission spectroscopy of liquid analytes using an electrolyte as a cathode discharge source (ELCAD) integrated on a micro-fluidic chip

机译:使用集成在微流控芯片上的电解质作为阴极放电源(ELCAD),对液体分析物进行直接光发射光谱分析

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Atomic emission detection of metallic species in aqueous solutions has been performed using a miniaturised plasma created within a planar,glass micro-fluidic chip.Detection was achieved using an Electrolyte as a Cathode Discharge source (ELCAD) in which the sample solution itself is used as the cathode for the discharge.To realise the ELCAD technique within a micro-fluidic device,a parallel liquid-gas flow was set up in a micro-channel and a glow discharge ignited between the flowing liquid sample surface and a metal wire anode.The detection of copper and sodium was achieved,using atmospheric pressure air as a carrier gas,by observation of atomic emission lines of copper at 324 nm,327 nm,511 nm,515 nm and 522 nm and an atomic emission line of sodium at 589 nm using a commercially available miniaturised spectrometer.A total electrical power of less than 70 mW was required to sustain the discharge.A semi-quantitative,absolute detection limit of 17 nmol s~(-1) was obtained for sodium with a sample flow rate of 100 mu L min~(-1) and an integration time of 100 ms in air at atmospheric pressure.The volume required for such detection is approximately 170 nL.Further analysis was performed with an Echelle spectrometer using both argon and air as a carrier gas.The geometry and flow rates used demonstrate the feasibility of integrating such micro-plasmas into other micro-fluidic devices,such as miniaturised CE devices,as a method of detection.The potential for using such micro-plasmas within highly portable miniaturised systems and mu-TAS devices is presented and discussed.
机译:使用在平面玻璃微流控芯片中产生的微型等离子体对水溶液中的金属物质进行原子发射检测。使用电解质作为阴极放电源(ELCAD)进行检测,其中将样品溶液本身用作样品为了在微流控设备中实现ELCAD技术,在微通道中建立了平行的液-气流动,并在流动的液体样品表面和金属丝阳极之间点燃了辉光放电。以大气压空气为载气,通过观察324 nm,327 nm,511 nm,515 nm和522 nm的铜原子发射线和589 nm的钠原子发射线,实现了铜和钠的检测使用市售的微型光谱仪进行放电所需的总电功率小于70 mW。钠的半定量绝对检测限为17 nmol s〜(-1)。样品流速为100μL min〜(-1),在大气中于空气中的积分时间为100 ms,检测所需的体积约为170 nL。使用Echelle光谱仪同时使用氩气和氩气进行进一步分析空气的几何形状和流速证明了将此类微等离子体整合到其他微流控设备中的可行性,例如将微型CE装置作为一种检测方法。在高度使用这种微等离子体的潜力介绍并讨论了便携式小型系统和mu-TAS设备。

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