Ye Mei-ying, Yin Xue-feng, Fang Zhao-lun
Institute of Microanalytical Systems, Department of Chemistry, Zhejiang University, Hangzhou 310028, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2003 Feb;23(1):89-93.
The coupling of capillary electrophoresis (CE) with inductively coupled plasma mass spectrometry (ICP-MS) has demonstrated multiple advantages, including high separation efficiency, sensitivity and resolution, as well as low sample consumption and detection limit. The technique has been widely used for the speciation of environmental and biological samples. The interface between CE and the nebulizing system of ICP-MS plays a key role in the hyphenation of CE and ICP-MS. The most important factors in the interface design were reviewed in this paper, including electrical connections, nebulizer designs and flow compensation in the nebulizer system. Methods for achieving stable electrical current within the capillary were discussed, including the employment of concentric sheath flow, stainless steel components, platinum wire and silver paint. The structures and performance of various nebulizer designs were reviewed and compared, including the concentric pneumatic nebulizer (CPN), micro concentric nebulizer (MCN), high efficiency nebulizer (HEN), ultrasonic nebulizer (USN) and direct injection nebulizer (DIN). To eliminate nebulizer suction, four compensations systems were suggested, including applying a negative pressure at the inlet of the capillary, putting a sol-gel frit at the outlet of the capillary, pumping an appropriate make-up flow to the interface and adjusting the height of the make-up flow. 35 papers were cited.
毛细管电泳(CE)与电感耦合等离子体质谱(ICP-MS)联用已展现出诸多优势,包括高分离效率、灵敏度和分辨率,以及低样品消耗和检测限。该技术已广泛应用于环境和生物样品的形态分析。CE与ICP-MS雾化系统之间的接口在CE和ICP-MS的联用中起着关键作用。本文综述了接口设计中的最重要因素,包括电气连接、雾化器设计以及雾化器系统中的流量补偿。讨论了在毛细管内实现稳定电流的方法,包括采用同心鞘流、不锈钢部件、铂丝和银漆。综述并比较了各种雾化器设计的结构和性能,包括同心气动雾化器(CPN)、微型同心雾化器(MCN)、高效雾化器(HEN)、超声雾化器(USN)和直接进样雾化器(DIN)。为消除雾化器抽吸,提出了四种补偿系统,包括在毛细管入口处施加负压、在毛细管出口处放置溶胶-凝胶烧结板、向接口泵送适当的补充流以及调整补充流的高度。引用文献35篇。