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Autonomous microfluidic system for phosphate detection

  • Christina McGraw
  • , Shannon E Stitzel
  • , John Cleary
  • , Conor Slater
  • , Dermot Diamond

Research output: Contribution to journalArticlepeer-review

74 Citations (Scopus)

Abstract

Miniaturization of analytical devices through the advent of microfluidics and micro total analysis systems is an important step forward for applications such as medical diagnostics and environmental monitoring. The development of field-deployable instruments requires that the entire system, including all necessary peripheral components, be miniaturized and packaged in a portable device. A sensor for long-term monitoring of phosphate levels has been developed that incorporates sampling, reagent and waste storage, detection, and wireless communication into a complete, miniaturized system. The device employs a low-power detection and communication system, so the entire instrument can operate autonomously for 7 days on a single rechargeable, 12V battery. In addition, integration of a wireless communication device allows the instrument to be controlled and results to be downloaded remotely. This autonomous system has a limit of detection of 0.3 mg/L and a linear dynamic range between 0 and 20 mg/L.
Original languageEnglish
Pages (from-to)1180-1185
JournalTalanta
Volume71
Issue number3
DOIs
Publication statusPublished - 2007

Keywords

  • Instrumental Methods (excl Immunological and Bioassay Methods)
  • Sensor Technology (Chemical aspects)

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