Structural stability of LiMn{sub 2}O{sub 4} electrodes for lithium batteries Metadata

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Title

  • Main Title Structural stability of LiMn{sub 2}O{sub 4} electrodes for lithium batteries

Creator

  • Author: Thackeray, M.M.
    Creator Type: Personal
  • Author: Mansuetto, M.F.
    Creator Type: Personal
    Creator Info: Argonne National Lab., IL (United States)
  • Author: Bates, J.B.
    Creator Type: Personal

Contributor

  • Sponsor: United States. Department of Energy.
    Contributor Type: Organization
    Contributor Info: USDOE, Washington, DC (United States)

Publisher

  • Name: Oak Ridge National Laboratory
    Place of Publication: Tennessee
    Additional Info: Oak Ridge National Lab., TN (United States)

Date

  • Creation: 1996-04-01

Language

  • English

Description

  • Content Description: the structural stability of LiMn{sub 2}O{sub 4}, which is of interest as an insertion electrode for rechargeable lithium batteries, is discussed with respect to processing techniques, composition, the Li- Mn-O phase diagram, and electrochemical behavior. Particular attention is paid to processing conditions that result in the formation of lithium-magnesium-oxide spinel products in which Mn{sup 2+} ions partially occupy the tetrahedral sites of the spinel structure. The electrochemical behavior of electron beam and rf magnetron sputtered thin film electrodes suggests the existence of partially inverse Li{sub 1-x}Mn{sub 2} O{sub 4} spinel structures during an initial charge to 5.3 volts.
  • Physical Description: 20 p.

Subject

  • STI Subject Categories: 25 Energy Storage
  • Keyword: Crystal Structure
  • STI Subject Categories: 36 Materials Science
  • Keyword: Electrodes
  • Keyword: Electrochemistry
  • Keyword: Materials
  • Keyword: Electric Batteries
  • Keyword: Magnesium Oxides
  • Keyword: Sputtering
  • Keyword: Spinels
  • STI Subject Categories: 40 Chemistry
  • Keyword: Lithium Oxides

Source

  • Conference: 8. international meeting on lithium batteries, Nagoya (Japan), 16-21 Jun 1996

Collection

  • Name: Office of Scientific & Technical Information Technical Reports
    Code: OSTI

Institution

  • Name: UNT Libraries Government Documents Department
    Code: UNTGD

Resource Type

  • Article

Format

  • Text

Identifier

  • Other: DE96012718
  • Report No.: ANL/CMT/CP--89275
  • Report No.: CONF-9606212--2
  • Grant Number: W-31109-ENG-38
  • Office of Scientific & Technical Information Report Number: 264586
  • Archival Resource Key: ark:/67531/metadc664721

Note

  • Display Note: OSTI as DE96012718
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