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Updated: Jan 31, 2026

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MATLAB in electrochemistry: A review.

Ali R Jalalvand1, Mahmoud Roushani2, Hector C Goicoechea3

  • 1Research Center of Oils and Fats, Kermanshah University of Medical Sciences, Kermanshah, Iran.

Talanta
|January 6, 2019
PubMed
Summary

This review explores how MATLAB (MATrix LABoratory) enhances electrochemistry research. It details various applications, enabling electrochemists to gain deeper quantitative and qualitative insights into chemical systems.

Keywords:
ElectrochemistryMATLABQuantitative and qualitative informationSolving of problem

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Area of Science:

  • * Computational science and engineering.
  • * Physical chemistry and electrochemistry.

Background:

  • * MATLAB is a versatile numerical computing environment and programming language.
  • * Electrochemistry investigates the relationship between electricity and chemical changes.
  • * MATLAB offers tools for data analysis, algorithm implementation, and visualization.

Purpose of the Study:

  • * To review diverse applications of MATLAB in electrochemistry.
  • * To highlight how MATLAB aids in obtaining quantitative and qualitative data.
  • * To discuss selected literature showcasing MATLAB's utility in electrochemical studies.

Main Methods:

  • * Comprehensive literature search for MATLAB applications in electrochemistry.
  • * Categorization of applications based on electrochemical problem-solving.
  • * Analysis of selected studies demonstrating MATLAB's capabilities.

Main Results:

  • * MATLAB facilitates matrix manipulations, data plotting, and algorithm implementation for electrochemical data.
  • * It enables the creation of user interfaces for electrochemical experiments and analysis.
  • * Interfacing capabilities with other programming languages (C++, Java, Python) enhance its utility.

Conclusions:

  • * MATLAB is a powerful tool for modern electrochemists.
  • * Its application leads to more accurate and comprehensive understanding of electrochemical systems.
  • * Continued use of MATLAB is expected to drive further advancements in electrochemistry.