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A Multidisciplinary Approach toward CMOS Capacitive Sensor Array for Droplet Analysis.

Hamed Osouli Tabrizi1, Saghi Forouhi1, Tayebeh Azadmousavi2

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Summary
This summary is machine-generated.

This study presents a new CMOS capacitive sensor method to analyze alcohol-water droplets by measuring their total time of evaporation (ToE). This technique offers a high dynamic range and resolution for chemical composition analysis.

Keywords:
CMOScapacitive sensordroplet analysislife science applicationstime of evaporation

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Area of Science:

  • Materials Science
  • Chemical Engineering
  • Sensor Technology

Background:

  • Alcohol-water mixtures are crucial in various industrial applications.
  • Accurate real-time analysis of liquid composition is essential.
  • Existing sensing methods may lack dynamic range or resolution.

Purpose of the Study:

  • To introduce and validate a novel CMOS capacitive sensing method for alcohol-water droplet analysis.
  • To measure the total time of evaporation (ToE) of alcohol-water droplets.
  • To address parasitic capacitance issues in capacitive sensors.

Main Methods:

  • Utilizing a CMOS capacitive sensor to monitor alcohol-water droplets.
  • Controlled thermal behavior of droplets to measure total time of evaporation (ToE).
  • Testing binary mixtures of water with ethanol or methanol (0-100% concentrations).

Main Results:

  • The capacitive sensor effectively measures both ToE and dielectric properties.
  • Higher dynamic range and resolution were achieved by measuring ToE compared to dielectric properties.
  • An electrode array successfully monitored droplet-sensor interactions.

Conclusions:

  • CMOS capacitive sensing is a beneficial method for accurate ToE measurement.
  • The proposed method demonstrates potential for analyzing liquid mixtures.
  • Solutions for parasitic capacitance in large-area sensors were discussed.