Qr code
DALIAN UNIVERSITY OF TECHNOLOGY Login 中文
薛春东

Associate Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates


Gender:Male
Alma Mater:中国科学院大学
Degree:Doctoral Degree
School/Department:医学部
Discipline:Biomedical Engineering. Fluid Mechanics. Measuring Technology and Instrument
Business Address:厚坤楼A201
Contact Information:xuechundong@dlut.edu.cn
E-Mail:xuechundong@dlut.edu.cn
Click: times

Open time:..

The Last Update Time:..

Current position: Home >> Scientific Research >> Paper Publications

A Capillary-Evaporation Micropump for Real-Time Sweat Rate Monitoring with an Electrochemical Sensor

Hits : Praise

Indexed by:Journal Papers

Date of Publication:2019-07-01

Journal:MICROMACHINES

Included Journals:SCIE、EI、PubMed

Volume:10

Issue:7

ISSN No.:2072-666X

Key Words:capillary-evaporation effect; electrochemical principle; micropump; sweat collection; sweat rate

Abstract:Sweat collection and real time monitoring of sweat rate play essential roles in physiology monitoring and assessment of an athlete's performance during exercise. In this paper, we report a micropump for sweat simulant collection based on the capillary-evaporation effect. An electrochemical sensor is integrated into the micropump, which monitors the flow rate in real-time by detecting the current using three electrodes. The evaporation rate from micropore array, equivalent to the sweat rate, was theoretically and numerically investigated. The designed micropump yields the maximum collection rate as high as 0.235 mu L/min. In addition, the collection capability of the micropump was validated experimentally; the flow rate through the microchannel was further detected in real-time with the electrochemical sensor. The experimental maximum collection rate showed good consistency with the theoretical data. Our proposed device shows the potential for sweat collection and real-time monitoring of sweat rate, which is a promising candidate for being a wearable platform for real-time physiology and performance monitoring during exercise.