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Journal ArticleDOI

Analysis of capacity-rate data for lithium batteries using simplified models of the discharge process

TLDR
Simplified models based on porous electrode theory are used to describe the discharge of rechargeable lithium batteries and derive analytic expressions for the specific capacity against discharge rate in terms of the relevant system parameters as mentioned in this paper.
Abstract
Simplified models based on porous electrode theory are used to describe the discharge of rechargeable lithium batteries and derive analytic expressions for the specific capacity against discharge rate in terms of the relevant system parameters. The resulting theoretical expressions are useful for design and optimization purposes and can also be used as a tool for the identification of system limitations from experimental data. Three major cases are considered that are expected to hold for different classes of systems being developed in the lithium battery industry. The first example is a cell with solution phase diffusion limitations for the two extreme cases of a uniform and a completely nonuniform reaction rate distribution in the porous electrode. Next, a discharge dominated by solid phase diffusion limitations inside the insertion electrode particles is analysed. Last, we consider an ohmically-limited cell with no concentration gradients and having an insertion reaction whose open-circuit potential depends linearly on state of charge. The results are applied to a cell of the form Li|solid polymer electrolyte|LiyMn2O4 in order to illustrate their utility.

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Citations
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Journal ArticleDOI

A review of conduction phenomena in Li-ion batteries

TL;DR: A comprehensive survey of conduction phenomena in all components of a Li-ion cell incorporating theoretical, experimental, and simulation studies is presented in this paper, where the critical results, issues and challenges with respect to ionic and electronic conduction in the cathode, anode and electrolyte are discussed.
Journal ArticleDOI

Review of Models for Predicting the Cycling Performance of Lithium Ion Batteries

TL;DR: In this article, a rigorous pseudo-two-dimensional model to simulate the cycling performance of a lithium ion cell is compared with two simplified models and the advantage of using simplified models is illustrated and their limitations are discussed.
Patent

Battery structures, self-organizing structures and related methods

TL;DR: In this article, an energy storage device includes a first electrode comprising a first material and a second electrode comprising another material, at least a portion of the first and second materials forming an interpenetrating network when dispersed in an electrolyte.
Journal ArticleDOI

Thermal modeling of porous insertion electrodes

TL;DR: In this paper, the entropy, irreversible resistance, and heat of mixing of mixing were investigated on Li|LiPF 6 in ethylene carbonate:dimethyl carbonate|LiAl 0.2 Mn 1.8 O 4-δ F 0.6 O 4δF 0.
Journal ArticleDOI

High-performance battery electrodes via magnetic templating

TL;DR: In this paper, a magnetic alignment approach was proposed to produce battery electrodes with low-tortuosity porosity and high capacity, which can result in faster charge transport kinetics and enable more than threefold higher area capacity.
References
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Book

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TL;DR: In this paper, a classic account describes the known exact solutions of problems of heat flow, with detailed discussion of all the most important boundary value problems, including boundary value maximization.
Journal ArticleDOI

Modeling of Galvanostatic Charge and Discharge of the Lithium/Polymer/Insertion Cell

TL;DR: In this article, the galvanostatic charge and discharge of a lithium anode/solid polymer separator/insertion cathode cell is modeled using concentrated solution theory, which is general enough to include a wide range of polymeric separator materials, lithium salts, and composite insertion cathodes.
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David Linden
TL;DR: In this article, the authors present the principles of operation and reactions factors affecting battery performance standardization of battery design selection and application of batteries, as well as a discussion of the differences between primary and secondary batteries.
Journal ArticleDOI

Comparison of Modeling Predictions with Experimental Data from Plastic Lithium Ion Cells

TL;DR: In this paper, the authors compared simulation results for a lithium-ion battery based on the couple Li{sub x}C{sub 6} {vert_bar} Li {sub y}Mn{sub 2}O{sub 4} are compared to experimental data.
Journal ArticleDOI

Theoretical Analysis of Current Distribution in Porous Electrodes

TL;DR: In this article, general equations describing the behavior of porous electrodes are developed and used to determine the initial and the steady-state conditions in one-dimensional porous electrodes of uniform geometry and polarization parameters.
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