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Updated: Jun 28, 2026

A Microfluidic Chip for ICPMS Sample Introduction
Published on: March 5, 2015
The use of a micropump based on capillary and evaporation effects in a microfluidic flow injection chemiluminescence
Yan-Xia Guan1, Zhang-Run Xu, Jing Dai
1Research Center for Analytical Sciences, Box 332, Northeastern University, Shenyang 110004, China; College of Information Science and Engineering, Shenyang University of Technology, Shenyang 110023, China.
Abstract:
The performance of a micropump operating on evaporation and capillary effects, developed for microfluidic (lab-on-a-chip) systems, was studied employing it as the fluid drive in a microfluidic flow injection (FI) system, with chemiluminescence (CL) detection. The micropump featured simple structure, small dimensions, low fabrication cost and stable and adjustable flow-rates during long working periods. Using a micropump with 6.6cm(2) evaporation area, with the ambient temperature and relative humidity fluctuating within 2h in the ranges 20-21 degrees C and 30-32%, respectively, an average flow-rate of 3.02muL/min was obtained, with a precision better than 1.2% R.S.D. (n=61). When applied to the microchip FI-CL system using the luminol/hexacyanoferrate/H(2)O(2) reaction, a precision of 1.4% R.S.D. (n=11) was obtained for luminol at a sampling frequency of 30h(-1).

