Modeling the Lithium Ion Battery
Author:
Affiliation:
1. Department of Chemical and Physical Sciences, Missouri Southern State University, Joplin, Missouri 64801, United States
Publisher
American Chemical Society (ACS)
Subject
Education,General Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/ed300533f
Reference23 articles.
1. Conductivity through Polymer Electrolytes and Its Implications in Lithium-Ion Batteries: Real-World Application of Periodic Trends
2. The Effective Use of an Interactive Software Program To Reduce Students' Misconceptions about Batteries
3. Lithium Batteries: A Practical Application of Chemical Principles
4. Theory of Stationary Electrode Polarography. Single Scan and Cyclic Methods Applied to Reversible, Irreversible, and Kinetic Systems.
5. Analysis of the diffusion layer thickness, equivalent circuit and conductance behaviour for reversible electron transfer processes in linear sweep voltammetry
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3. Accurate computations of bound state properties in three- and four-electron atomic systems in the basis of multi-dimensional gaussoids;Journal of Mathematical Chemistry;2016-07-25
4. Modeling the Lithium Ion/Electrode Battery Interface Using Fick’s Second Law of Diffusion, the Laplace Transform, Charge Transfer Functions, and a [4, 4] Padé Approximant;International Journal of Electrochemistry;2015
5. Chemical Fabrication and Electrochemical Characterization of Graphene Nanosheets Using a Lithium Battery Platform;Journal of Chemical Education;2014-11-20
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