Ionic electrolytes for Lithium Batteries

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Characterization of Transport Properties of Lithium Electrolytes Marcelo Videa Department of Chemistry ITESM Campus monterret Ciudad de México, 4 de agosto de 2005 Seminarios Alessandro Volta

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Una plática que dí hace varios años en una serie de conferencias Alessandro Volta en México DF

Transcript of Ionic electrolytes for Lithium Batteries

Page 1: Ionic electrolytes for Lithium Batteries

Characterization of Transport Propertiesof Lithium Electrolytes

Marcelo VideaDepartment of ChemistryITESM Campus monterret

Ciudad de México, 4 de agosto de 2005

Seminarios Alessandro Volta

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• Introduction

• Characteristics of an ideal electrolyte

• Classification of lithium electrolytes

• Transport properties of electrolytes

• Concluding remarks

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Energy storage devices:Secondary batteries

Mitsubishi Eclipse

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Lithium batteries:Chemical thermodynamics

Li metalAnode

Cathode

Carbon

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Battery under discharge:voltamperometric characteristic

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Electrochemical stability

the electrolyte has to be stable against the presence of strongly oxidizing and reducing agents, i.e., cathode and anode materials, respectively.

Electrochemical window > 4.5V

Characteristics of an ideal electrolyte

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Characteristics of an ideal electrolyte

High ionic conductivity (σ)

limiting value > 10-3 Scm-1

1.5x10-3 Scm-1

l=100 µmA=100 cm2

R=17 mΩ

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Transfer number (tLi+≈1)

Characteristics of an ideal electrolyte

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Classification of lithium electrolytes

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Transport properties of electrolytesConductivity measurements

Impedance spectroscopy analysis

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Conductivity:LiAlCl4-LiIm

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Ionic conductivity vs. Temperature:Vogel-Fulcher-Tamman equation

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Conductivity vs. Fluidity

fluidity

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Angell’s Decoupling Index, R*τ

Structural relaxation time

Ionic relaxation time

At the glass transition temperature

C.A. Angell (1983) Solid State Ionics 9/10, 3

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Índice de desacoplamiento, R*τ y transición vítrea

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Phase Diagram for Ionic systemsDTA, DSC

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Results

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Binary systems:LiAlCl4-LiIm

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Binary Ionic Liquid:LiAlCl4-LiImAlCl3

Composition region Non-crystallizingIonic system

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Conductivity measurements:LiAlCl4-LiImAlCl3

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Decoupling Index:LiAlCl4-LiImAlCl3

Interpretation of the results in terms of ionic percolation in a two phase system

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Self-Diffusivity Measurements for

7Li

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Measurement of Lithium self-diffusionPulsed Field Gradient - NMR

Chemagnetics (7 Tesla)

Spin Echo program

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Study of LiAlCl4-LiAlI4

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Low temperature behaviour

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Conclusions

• The use of binary and ternary systems proves to be a useful strategy in the preparation of glass-forming ionic liquids.

• Tg y Rτ are parameters that characterize the mechanical properties of an ionic electrolyte.

• In the system LiAlCl4-LiImAlCl3 both the phenomenon of double glass transition as the sudden increase in the Rτ value serve as evidence to argue for the existence of two immiscible liquid phases.

• The ratios σcalc/ σexp are in a first approximation a measure of the number of transfer. However, in LiAlCl4 y and in the eutectic LiAlCl4-LiAlI4 , tLi+ ≈1.

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Acknowledgements

Fondo de investigación DOE (DEF9039ER45541 )Moltech Corp. Dr. C. Austen AngellDr. Eduardo SánchezDr. Xu Kang