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The AMPIX electrochemical cell: A versatile apparatus for in situ X-ray scattering and spectroscopic measurements

  • Olaf J. Borkiewicz
  • , Badri Shyam
  • , Kamila M. Wiaderek
  • , Charles Kurtz
  • , Peter J. Chupas
  • , Karena W. Chapman
  • Argonne National Laboratory

Research output: Contribution to journalArticlepeer-review

221 Scopus citations

Abstract

This article presents a versatile easy-to-use electrochemical cell suitable for in operando, in situ measurements of battery materials during electrochemical cycling using a variety of X-ray techniques. Argonnes multi-purpose in situ X-ray (AMPIX) cell provides reliable electrochemical cycling over extended periods owing to the uniform stack pressure applied by rigid X-ray windows and the formation of a high-fidelity hermetic seal. The suitability of the AMPIX cell for a broad range of synchrotron-based X-ray scattering and spectroscopic measurements has been demonstrated with studies at eight Advanced Photon Source beamlines to date. Compatible techniques include pair distribution function analysis, high-resolution powder diffraction, small-angle scattering and X-ray absorption spectroscopy. These techniques probe a broad range of electronic, structural and morphological features relevant to battery materials. The AMPIX cell enables experiments providing greater insight into the complex processes that occur in operating batteries by allowing the electrochemical reactions to be probed at fine reaction intervals with greater consistency (within the charge-discharge cycle and between different methodologies) with potential for new time-dependent kinetic studies or studies of transient species. Representative X-ray and electrochemical data to demonstrate the functionality of the AMPIX cell are presented.

Original languageEnglish
Pages (from-to)1261-1269
Number of pages9
JournalJournal of Applied Crystallography
Volume45
Issue number6
DOIs
StatePublished - Dec 2012

Keywords

  • batteries
  • electrochemical cells
  • pair distribution function analysis
  • powder diffraction
  • small-angle X-ray scattering
  • X-ray absorption spectroscopy

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