Electrochemistry and Electrodeposition in COMSOL Multiphysics® One-Day Training Course

November 4, 2026 11:00 a.m.–5:00 p.m. EST

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Intensive introduction to modeling electrochemical reactions in COMSOL Multiphysics®

This training course introduces the capabilities of the Electrochemistry Module and Electrodeposition Module, add-ons to the COMSOL Multiphysics® simulation platform. During the course, you will learn how to use these two modules to simulate electrochemical reactions and analyze the important characteristics of electrodeposition cells. The course will begin with the basics of electrochemical modeling and then gradually shift to more complex topics, such as dissolving–depositing electrodes, electrolyte mass transport, electrode deformation, and optimization.

During the training exercises, you will learn how to account for ohmic, activation, and concentration overpotential and define chemical and electrochemical reactions in COMSOL Multiphysics®. You will also learn how modeling can predict the effects that electrode geometry, material properties, and operating conditions have on the performance of electrochemical cells.

In addition, we will give an overview of the dedicated electrochemistry features that are available for simulating amperometry, potentiometry, and other electroanalytical techniques. Using the Electrodeposition Module, we will show how to simulate the impact of geometric changes on electrochemical processes, model moving boundaries, and predict the thickness of deposited layers.

All paid registrants will receive a free 14-day trial of COMSOL Multiphysics®, as well as the course material, prior to the course. Additionally, the training course will be recorded, and the recording will be made available to all registrants.

Training Course Objective

The goals of the course are to immerse you in the modeling workflow in COMSOL Multiphysics®, help you feel comfortable working with the Electrochemistry Module and the Electrodeposition Module, and provide you with the knowledge required for efficiently modeling electrochemistry and electrodeposition in the software.

To teach the course, we will use a combination of slide-based lectures and instructor-guided hands-on exercises.

Schedule

11 a.m.–1 p.m. EDT

  • Introduction to the Electrochemistry and Electrodeposition Modules
  • Charge conservation
  • Thermodynamics
  • Electrode kinetics
  • Dissolving–depositing electrodes

Exercises:

  • Electrocoating of paint on a car door
  • Decorative plating

2–5 p.m. EDT

  • Electrochemical mass transport
  • Deforming electrodes
  • Parameter estimation and optimization

Exercises:

  • Alloy deposition (simultaneous co-deposition)
  • Electrodeposition of a microconnector bump with deforming geometry
  • Estimation of reaction kinetic parameters

Suggested Background

This course assumes familiarity with the fundamentals of electrochemistry. We strongly recommend that those new to COMSOL Multiphysics® take the COMSOL Multiphysics® Intensive Training course prior to attending this class.

Pricing & Payment Methods (Update below if needed.)

The price for this online training course is $249 per person.

We offer an academic discount to those who qualify. The academic rate for this course is $149.

We accept payment by credit card, company purchase order, check, wire, or direct deposit. For security purposes, please do not send credit card information via email.

This training course will be recorded, and the recording will be made available to all paid registrants.

Mail payments or purchase orders to:   COMSOL, Inc.   100 District Avenue   Burlington, MA 01803

Email purchase orders to: course@comsol.com 

 

Transport through a tubular membrane

Please review our course cancellation/return policies. For additional information, please email info@comsol.com.

Training Course Details

Location:
Online

Local Start Time:
November 4, 2026 | 11:00 a.m. EST (UTC-05:00)
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