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finite element modeling comsol multiphysics v. 5.5, electrochemistry module  (COMSOL Inc)

 
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    COMSOL Inc finite element modeling comsol multiphysics v. 5.5, electrochemistry module
    Finite Element Modeling Comsol Multiphysics V. 5.5, Electrochemistry Module, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/electrochemistry+module+comsol+multiphysics/finite+element+modeling+comsol+multiphysics+v++5+5++electrochemistry+module/pmc11969543__ja4c16835_si_001-73-18-14
    Average 90 stars, based on 1 article reviews
    finite element modeling comsol multiphysics v. 5.5, electrochemistry module - by Bioz Stars, 2026-09
    90/100 stars

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    Software:

    Article Title: Prediction of the Specific Energy of Supercapacitors with Polymeric Materials Using Advanced Molecular Dynamics Simulations
    Article Snippet: - GROMACS (e.g., GROMACS 2024.4 version) is a software package for molecular dynamics simulations of biomolecules that can be used for simulating the electrochemical properties of batteries and supercapacitors. .. Other software tools can be mentioned that are more specialized for electrochemical simulations: COMSOL’s Electrochemistry Module (e.g., COMSOL Multiphysics ® version 6.3 introduces a new interface to model transport in any electrolyte solution, new capabilities for parameter estimation), MATLAB-based toolboxes (e.g., Toolbox Tools Version 1.2.1), and dedicated electrochemical software like EC-Lab (e.g., BioLogic EC-Lab ® Software, 15 November 2024 version). .. Our study was performed using the HFSS 2024 R2 program from ANSYS, due to the clear advantages offered by the software: the capability of indicating results that are not included in the theoretical description of the structures and phenomena; the method is non-invasive and very flexible (the constitutive parameters can be modified simultaneously); the possibilities of structure design and optimization due to capabilities of illustrating atypical behavior and resonances.

    Selection:

    Article Title: Effect of Electrolyte Concentration and Pore Size on Ion Current Rectification Inversion.
    Article Snippet: .. SELECTION Geometric entity level Boundary Selection Geometry geom1: Dimension 1: Boundaries 12, 33 EQUATIONS Concentration SETTINGS Description Value Species cK On Species cCl On Concentration {cbulk, cbulk} Constraint Settings SETTINGS Description Value Apply reaction terms on All physics (symmetric) Use weak constraints On CREEPING FLOW 2 USED PRODUCTS Electrochemistry Module COMSOL Multiphysics 34 ..

    Article Title: Effect of Electrolyte Concentration and Pore Size on Ion Current Rectification Inversion.
    Article Snippet: .. SELECTION Geometric entity level Boundary Selection Geometry geom1: Dimension 1: Boundaries 19–22, 24, 30, 32, 37, 39 EQUATIONS Surface Charge Density SETTINGS Description Value Surface charge density surfCharge Coordinate System Selection SETTINGS Description Value Coordinate system Global coordinate system TRANSPORT OF DILUTED SPECIES USED PRODUCTS Electrochemistry Module COMSOL Multiphysics 28 ..

    Concentration Assay:

    Article Title: Effect of Electrolyte Concentration and Pore Size on Ion Current Rectification Inversion.
    Article Snippet: .. SELECTION Geometric entity level Boundary Selection Geometry geom1: Dimension 1: Boundaries 12, 33 EQUATIONS Concentration SETTINGS Description Value Species cK On Species cCl On Concentration {cbulk, cbulk} Constraint Settings SETTINGS Description Value Apply reaction terms on All physics (symmetric) Use weak constraints On CREEPING FLOW 2 USED PRODUCTS Electrochemistry Module COMSOL Multiphysics 34 ..

    Article Title: Paired Electrosynthesis at Interdigitated Microband Electrodes: Exploring Diffusion and Reaction Zones in the Absence of a Supporting Electrolyte
    Article Snippet: .. Plot Groups ............................................................................................................................................................... 25 1 Global Definitions Date Mar 18, 2024, 11:37:32 AM GLOBAL SETTINGS Name M6T 2023 10 12.mph Path /home/liec-eletroquimica/Documentos/Evaldo/model_ref/M6T_2023_10_12.mph Version COMSOL Multiphysics 6.0 (Build: 354) USED PRODUCTS Electrochemistry Module COMSOL Multiphysics COMPUTER INFORMATION CPU Intel(R) Core(TM) i7-7800X CPU @ 3.50GHz, 6 cores Operating system Linux 1.1 PARAMETERS 1.1.1 Parameters 1 PARAMETERS 1 Name Expression Value Description tau 0.2[s] 0.2 s Total time alpha_ox 0.5 0.5 Oxidation reaction transfer co- efficient eps_MetOH 33 33 Dielectric constant of methanol r_MetOH 0.36[nm]/2 1.8E−10 m Kinetic diameter of the metha- nol molecule mu (2 + sqrt(3))*r_MetOH 6.7177E−10 m Thickness of the Stern layer C_ref 1[mol/l] 1000 mol/m3 Reference concentration alpha_red 0.5 0.5 Reduction reaction transfer co- efficient eps_S 11 11 Dielectric constant inside the Stern layer C_S epsilon0_const*eps_S/mu 0.14498 F/m2 Capacitance of the Stern layer ..

    Expressing:

    Article Title: Paired Electrosynthesis at Interdigitated Microband Electrodes: Exploring Diffusion and Reaction Zones in the Absence of a Supporting Electrolyte
    Article Snippet: .. Plot Groups ............................................................................................................................................................... 25 1 Global Definitions Date Mar 18, 2024, 11:37:32 AM GLOBAL SETTINGS Name M6T 2023 10 12.mph Path /home/liec-eletroquimica/Documentos/Evaldo/model_ref/M6T_2023_10_12.mph Version COMSOL Multiphysics 6.0 (Build: 354) USED PRODUCTS Electrochemistry Module COMSOL Multiphysics COMPUTER INFORMATION CPU Intel(R) Core(TM) i7-7800X CPU @ 3.50GHz, 6 cores Operating system Linux 1.1 PARAMETERS 1.1.1 Parameters 1 PARAMETERS 1 Name Expression Value Description tau 0.2[s] 0.2 s Total time alpha_ox 0.5 0.5 Oxidation reaction transfer co- efficient eps_MetOH 33 33 Dielectric constant of methanol r_MetOH 0.36[nm]/2 1.8E−10 m Kinetic diameter of the metha- nol molecule mu (2 + sqrt(3))*r_MetOH 6.7177E−10 m Thickness of the Stern layer C_ref 1[mol/l] 1000 mol/m3 Reference concentration alpha_red 0.5 0.5 Reduction reaction transfer co- efficient eps_S 11 11 Dielectric constant inside the Stern layer C_S epsilon0_const*eps_S/mu 0.14498 F/m2 Capacitance of the Stern layer ..



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