Haber C, Jones W R, Soglia J, Surve M A, McGlynn M, Caplan A, Reineck J R, Krstanovic C
Orion Research, a Subsidiary of Thermedics, Inc., a Thermo Electron Company, Boston, MA, USA.
J Capillary Electrophor. 1996 Jan-Feb;3(1):1-11.
Conductivity detection in CE has recently become available in a commercial CE instrument. The new conductivity cell is based on an end-capillary concept. The conductivity sensor and the detection end of the fused-silica capillary are permanently encapsulated in two individually modified coupling connectors (ConTip, ConCap [both from Orion Research, Boston, MA, U.S.A.]). This open-architecture cell permits interchangeability of sensors and capillaries, while maintaining a precisely defined detection volume between those two components when inserted into the detector cell block. The detector's performance is evaluated for sensitivity, linearity, and reproducibility using low-mobility electrolytes. Electropherograms comprising a variety of ionic class separations including inorganic and organic anions, organic surfactants, alkali metals, alkaline earths, transition metals, and organic amines are shown along with separations of actual samples.
近年来,商用毛细管电泳(CE)仪器已具备电导检测功能。新型电导池基于端毛细管概念设计。电导传感器和熔融石英毛细管的检测端被永久封装在两个经过单独改良的耦合连接器(ConTip、ConCap [均来自美国马萨诸塞州波士顿的奥立龙研究公司])中。这种开放式结构的池子允许传感器和毛细管互换,同时在插入检测池模块时,能在这两个组件之间保持精确定义的检测体积。使用低迁移率电解质对检测器的灵敏度、线性和重现性进行了评估。展示了包含各种离子类别分离的电泳图,包括无机和有机阴离子、有机表面活性剂、碱金属、碱土金属、过渡金属和有机胺,以及实际样品的分离情况。