Development of a special cell for optical and electrochemical measurements using 3D printing and modern electronic base

A special design of the measuring cell was proposed, which makes it possible to determine the optical and electrochemical characteristics of thin-film electrochromic electrodes simultaneously. Also, the proposed cell provides constant temperature control using a small-sized thermostating unit built...

Full description

Bibliographic Details
Main Authors: Valerii Kotok, Vadym Kovalenko
Format: Article
Language:English
Published: PC Technology Center 2021-04-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
koh
Online Access:http://journals.uran.ua/eejet/article/view/228533
id doaj-084ecbbabc2a448db8a0e7ff9db1dd71
record_format Article
spelling doaj-084ecbbabc2a448db8a0e7ff9db1dd712021-05-11T13:10:30ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612021-04-0125 (110)61310.15587/1729-4061.2021.228533266078Development of a special cell for optical and electrochemical measurements using 3D printing and modern electronic baseValerii Kotok0https://orcid.org/0000-0001-8879-7189Vadym Kovalenko1https://orcid.org/0000-0002-8012-6732Ukrainian State University of Chemical Technology; Vyatka State UniversityUkrainian State University of Chemical Technology; Vyatka State UniversityA special design of the measuring cell was proposed, which makes it possible to determine the optical and electrochemical characteristics of thin-film electrochromic electrodes simultaneously. Also, the proposed cell provides constant temperature control using a small-sized thermostating unit built on Peltier elements and digital boards of W1209 thermostats. The cell was made using 3D printing with ABS plastic by the fused deposition method (FDM), followed by a sealing stage using a solution of polymethyl methacrylate dissolved in dichloroethane. In the course of the research, the use of a green laser with a wavelength of 520 nm was substantiated. Separately, the linearity of optical readings, the dependence of the indicators of the optical characteristics measurement system on temperature, as well as the uniformity of electrolyte heating in the cell, were studied. In addition, the pattern of the electric field was determined, which was an indicator of the uniformity of the current density distribution on the measured electrode. The obtained dependences made it possible to assert that the characteristics of the cell and the measuring system as a whole are suitable for the stated research purposes. It was also shown that the cost of the cell, together with the optical measuring system and the constant temperature control system, is more than two times cheaper than simple electrochemical cells offered by manufacturers. The proposed algorithm for the development of the cell design, the approach to the selection of components, as well as the given technical details, allow us to manufacture measuring equipment for the specific goals of the researcher. In this case, the given schematic, structural, and hardware solutions can be used separately from each otherhttp://journals.uran.ua/eejet/article/view/228533measuring cell3d printingelectrochromismoptical characteristicselectrochemical characteristicskoh
collection DOAJ
language English
format Article
sources DOAJ
author Valerii Kotok
Vadym Kovalenko
spellingShingle Valerii Kotok
Vadym Kovalenko
Development of a special cell for optical and electrochemical measurements using 3D printing and modern electronic base
Eastern-European Journal of Enterprise Technologies
measuring cell
3d printing
electrochromism
optical characteristics
electrochemical characteristics
koh
author_facet Valerii Kotok
Vadym Kovalenko
author_sort Valerii Kotok
title Development of a special cell for optical and electrochemical measurements using 3D printing and modern electronic base
title_short Development of a special cell for optical and electrochemical measurements using 3D printing and modern electronic base
title_full Development of a special cell for optical and electrochemical measurements using 3D printing and modern electronic base
title_fullStr Development of a special cell for optical and electrochemical measurements using 3D printing and modern electronic base
title_full_unstemmed Development of a special cell for optical and electrochemical measurements using 3D printing and modern electronic base
title_sort development of a special cell for optical and electrochemical measurements using 3d printing and modern electronic base
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2021-04-01
description A special design of the measuring cell was proposed, which makes it possible to determine the optical and electrochemical characteristics of thin-film electrochromic electrodes simultaneously. Also, the proposed cell provides constant temperature control using a small-sized thermostating unit built on Peltier elements and digital boards of W1209 thermostats. The cell was made using 3D printing with ABS plastic by the fused deposition method (FDM), followed by a sealing stage using a solution of polymethyl methacrylate dissolved in dichloroethane. In the course of the research, the use of a green laser with a wavelength of 520 nm was substantiated. Separately, the linearity of optical readings, the dependence of the indicators of the optical characteristics measurement system on temperature, as well as the uniformity of electrolyte heating in the cell, were studied. In addition, the pattern of the electric field was determined, which was an indicator of the uniformity of the current density distribution on the measured electrode. The obtained dependences made it possible to assert that the characteristics of the cell and the measuring system as a whole are suitable for the stated research purposes. It was also shown that the cost of the cell, together with the optical measuring system and the constant temperature control system, is more than two times cheaper than simple electrochemical cells offered by manufacturers. The proposed algorithm for the development of the cell design, the approach to the selection of components, as well as the given technical details, allow us to manufacture measuring equipment for the specific goals of the researcher. In this case, the given schematic, structural, and hardware solutions can be used separately from each other
topic measuring cell
3d printing
electrochromism
optical characteristics
electrochemical characteristics
koh
url http://journals.uran.ua/eejet/article/view/228533
work_keys_str_mv AT valeriikotok developmentofaspecialcellforopticalandelectrochemicalmeasurementsusing3dprintingandmodernelectronicbase
AT vadymkovalenko developmentofaspecialcellforopticalandelectrochemicalmeasurementsusing3dprintingandmodernelectronicbase
_version_ 1721444195425583104