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一种用于快速分析流动有机液体中表面活性剂的动态液-液界面压力检测器。

A dynamic liquid-liquid interfacial pressure detector for the rapid analysis of surfactants in a flowing organic liquid.

作者信息

Lenghor Narong, Staggemeier Bethany A, Hamad Mazen L, Udnan Yuthapong, Tanikkul Sumalee, Jakmunee Jaroon, Grudpan Kate, Prazen Bryan J, Synovec Robert E

机构信息

Department of Chemistry, Faculty of Science, Institute of Science and Technology, Research and Development, Chiang Mai University, Chiang Mai 50200, Thailand; Department of Chemistry, Center for Process Analytical Chemistry, Box 351700, University of Washington, Seattle, Washington 98195-1700, USA.

出版信息

Talanta. 2005 Feb 15;65(3):722-9. doi: 10.1016/j.talanta.2004.07.040.

Abstract

Design and development of a dynamic interfacial pressure detector (DIPD) is reported. The DIPD measures the differential pressure as a function of time across the liquid-liquid interface of organic liquid drops (i.e., n-hexane) that repeatedly grow in water at the end of a capillary tip. Using a calibration technique based on the Young-Laplace equation, the differential pressure signal is converted, in real-time, to a relative interfacial pressure. This allows the DIPD to monitor the interfacial tension of surface active species at liquid-liquid interfaces in flow-based analytical techniques, such as flow injection analysis (FIA), sequential injection analysis (SIA) and high performance liquid chromatography (HPLC). The DIPD is similar in principle to the dynamic surface tension detector (DSTD), which monitors the surface tension at the air-liquid interface. In this report, the interfacial pressure at the hexane-water interface was monitored as analytes in the hexane phase diffused to and arranged at the hexane-water interface. The DIPD was combined with FIA to analytically measure the interfacial properties of cholesterol and Brij((R))30 at the hexane-water interface. Results show that both cholesterol and Brij((R))30 exhibit a dynamic interfacial pressure signal during hexane drop growth. A calibration curve demonstrates that the relative interfacial pressure of cholesterol in hexane increases as the cholesterol concentration increases from 100 to 10,000mugml(-1). An example of the utility of the DIPD as a selective detector for a chromatographic separation of interface-active species is also presented in the analysis of cholesterol in egg yolk by normal-phase HPLC-DIPD.

摘要

报道了一种动态界面压力检测器(DIPD)的设计与开发。DIPD测量毛细管尖端末端在水中反复生长的有机液滴(即正己烷)的液 - 液界面上压差随时间的变化。使用基于杨 - 拉普拉斯方程的校准技术,压差信号实时转换为相对界面压力。这使得DIPD能够在流动分析技术(如流动注射分析(FIA)、顺序注射分析(SIA)和高效液相色谱(HPLC))中监测液 - 液界面处表面活性物质的界面张力。DIPD在原理上与动态表面张力检测器(DSTD)相似,后者监测气 - 液界面处的表面张力。在本报告中,当正己烷相中的分析物扩散到正己烷 - 水界面并在该界面排列时,监测了正己烷 - 水界面处的界面压力。DIPD与FIA相结合,用于分析测量正己烷 - 水界面处胆固醇和Brij((R))30的界面性质。结果表明,在正己烷液滴生长过程中,胆固醇和Brij((R))30均呈现动态界面压力信号。校准曲线表明,随着胆固醇浓度从100增加到10,000μgml(-1),正己烷中胆固醇的相对界面压力增加。在正相HPLC - DIPD分析蛋黄中的胆固醇时,还展示了DIPD作为界面活性物质色谱分离的选择性检测器的应用实例。

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