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ZnO decorated germanium nanoparticles as anode materials in Li-ion batteries

  • Tae Hee Kim
  • , Song Yi Park
  • , Tack Ho Lee
  • , Jaeki Jeong
  • , Dong Suk Kim
  • , Mark T. Swihart
  • , Hyun Kon Song
  • , Jin Young Kim
  • , Seongbeom Kim
  • Ulsan National Institute of Science and Technology
  • Korea Institute of Energy Research
  • Kangwon National University

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Germanium exhibits high charge capacity and high lithium diffusivity, both are the key requirements for electrode materials in high performance lithium ion batteries (LIBs). However, high volume expansion and segregation from the electrode during charge-discharge cycling have limited use of germanium in LIBs. Here, we demonstrate that ZnO decorated Ge nanoparticles (Ge@ZnO NPs) can overcome these limitations of Ge as an LIB anode material. We produced Ge NPs at high rates by laser pyrolysis of GeH4, then coated them with solution phase synthesized ZnO NPs. Half-cell tests revealed dramatically enhanced cycling stability and higher rate capability of Ge@ZnO NPs compared to Ge NPs. Enhancements arise from the core-shell structure of Ge@ZnO NPs as well as production of metallic Zn from the ZnO layer. These findings not only demonstrate a new surface treatment for Ge NPs, but also provide a new opportunity for development of high-rate LIBs.

Original languageEnglish
Article number095402
JournalNanotechnology
Volume28
Issue number9
DOIs
StatePublished - Jan 30 2017

Keywords

  • anode material
  • germanium nanoparticle
  • laser pyrolysis
  • lithium ion battery
  • ZnO nanoparticle

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