Mathematical modeling of hydrogen evolution at a rotating disk electrode

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Abstract

The model is based on the concept of semi-infinite boundary conditions with nonlinear convection-diffusion equations. Using the newest analytical approach the convection-diffusion equations problem has been solved. Approximate analytical representation for both the levels of hydrogen and hydroxide ion of the reactants is acquired. Numerical solutions are best achieved using the Matlab software, and the acceptable consensus is compared with the analytical solution.

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Sylvia, S. V., Salomi, R. J., & Rajendran, L. (2020). Mathematical modeling of hydrogen evolution at a rotating disk electrode. In AIP Conference Proceedings (Vol. 2277). American Institute of Physics Inc. https://doi.org/10.1063/5.0025576

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