EventsThe 2nd International Electronic Conference on Chemical Sensors and Analytical Chemistry
Published
This submission belongs to the session S5. Analytical Methods, Instrumentation and Miniaturization of the event The 2nd International Electronic Conference on Chemical Sensors and Analytical Chemistry
Published date
22 Sep, 2023
Academic Editor
author-avatarJin-Ming Lin
Citation
Sergey Gubsky, Development of low-cost Arduino-based equipments for analytical and educational applications, in Proceedings of The 2nd International Electronic Conference on Chemical Sensors and Analytical Chemistry, 16 September–30 September 2023, MDPI: Basel, Switzerland, doi: 10.3390/CSAC2023-14893
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Development of low-cost Arduino-based equipments for analytical and educational applications

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1. Department of Chemistry, Biochemistry, Microbiology and Hygiene of Nutrition, State Biotechnological University, Kharkiv, Ukraine, Ukraine
Abstract

Modern microcontroller Arduino platform is often used to create electronic devices with the ability to receive signals from various digital and analog sensors, further primary processing of information with transfer to a computer, as well as to control various devices. This versatility makes it possible to create low-cost equipment for analytical and educational applications on these platforms.

As an example, this white paper describes the benefits of using Arduino microcontroller boards to create two powerful and inexpensive interfaces for computers and laboratory equipment for automating analytical chemistry laboratories. The first one is a device for carrying out coulometric titration in galvanostatic mode with potentiometric or amperometric indication of the titration end point. The instrument is used to determine the concentration of individual substances and the total antioxidant capacity of food systems. Another development is a device for determining the water activity of food systems with a capacitive sensor for determining relative humidity. Both measurement equipment uses Arduino One or Nano microcontrollers in combination with various controls for analog signal measurement, A/D conversion, and indication. The measured values are monitored in real time by transferring information to a personal computer via the USB port under the control of the developed software.

The effective use of the developed devices is presented on the example of measurements of foodstuff samples with obtaining validated data.

Keywords
Arduino board
coulometric titration
water activity
foodstuff
low-cost equipment
laboratory automation
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