Conformal Surface Coatings to Enable High Volume Expansion Li-Ion Anode Materials

Abstract

An alumina surface coating is demonstrated to improve electrochemical performance of MoO3 nanoparticles as high capacity/ high-volume expansion anodes for Li-ion batteries. Thin, conformal surface coatings were grown using atomic layer deposition (ALD) that relies on self-limiting surface reactions. ALD coatings were tested on both individual nanoparticles and prefabricated electrodes containing conductive additive and binder. The coated and non-coated materials were characterized using transmission electron microscopy, energy-dispersive X-ray spectroscopy, electrochemical impedance spectroscopy and galvanostatic charge/discharge cycling. Importantly, increased stability and capacity retention was only observed when the fully fabricated electrode was coated. The alumina layer both improves the adhesion of the entire electrode, during volume expansion/contraction and protects the nanoparticle surfaces. Coating the entire electrode also allows for an important carbothermal reduction process that occurs during electrode pre-heat treatment. ALD is thus demonstrated as a novel and necessary method that may be employed to coat the tortuous network of a battery electrode.

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Document Details

Document Type
Technical Report
Publication Date
Jul 12, 2010
Accession Number
ADA553376

Entities

People

  • Andrew S. Cavanagh
  • Anne C. Dillon
  • Leah A. Riley
  • Se-Hee Lee
  • Steven M. George
  • Yanfa Yan
  • Yoon S. Jung

Organizations

  • National Renewable Energy Laboratory

Tags

Communities of Interest

  • Advanced Electronics

DTIC Thesaurus Topics

  • Chemical Synthesis
  • Chemistry
  • Electron Microscopy
  • Energy
  • Fabrication
  • Films
  • Heat Treatment
  • Hybrid Electric Vehicles
  • Ionic Liquids
  • Lithium Ion Batteries
  • Materials
  • Materials Laboratories
  • Materials Processing
  • Materials Science
  • Mechanical Engineering
  • Nanoparticles
  • Particles

Fields of Study

  • Materials science

Readers

  • Electrochemical Engineering/ Fuel Cell Technologies
  • Surface Coatings Technology.
  • Thin Film Deposition Science.

Technology Areas

  • Biotechnology
  • Microelectronics
  • Microelectronics - Graphene