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Miniature all-solid-state heterostructure nanowire Li-ion batteries as a tool for engineering and structural diagnostics of nanoscale electrochemical processes

Journal Article · · Nanoscale
DOI:https://doi.org/10.1039/C4NR01666A· OSTI ID:1384684
 [1];  [2];  [3];  [2];  [2];  [4];  [5];  [6];  [7]
  1. Material Measurement Laboratory; National Institute of Standards and Technology; Gaithersburg, USA; Department of Materials Science and Engineering; University of Maryland
  2. Center for Nanoscale Science and Technology; National Institute of Standards and Technology; Gaithersburg, USA
  3. Center for Nanoscale Science and Technology; National Institute of Standards and Technology; Gaithersburg, USA; Institute for Research in Electronics and Applied Physics; University of Maryland
  4. Material Measurement Laboratory; National Institute of Standards and Technology; Gaithersburg, USA
  5. Material Measurement Laboratory; National Institute of Standards and Technology; Gaithersburg, USA; Institute for Research in Electronics and Applied Physics; University of Maryland
  6. Department of Materials Science and Engineering; University of Maryland; College Park, USA
  7. Center for Nanoscale Science and Technology; National Institute of Standards and Technology; Gaithersburg, USA; Sandia National Laboratories; Livermore, USA

We have revealed the 3D structure of Li-ion batteries composed of LiCoO2cathode, LiPON electrolyte and Si anode deposited around Si nanowires as a scaffolding core.

Research Organization:
Energy Frontier Research Centers (EFRC) (United States). Nanostructures for Electrical Energy Storage (NEES)
Sponsoring Organization:
USDOE SC Office of Basic Energy Sciences (SC-22)
DOE Contract Number:
SC0001160
OSTI ID:
1384684
Journal Information:
Nanoscale, Journal Name: Nanoscale Journal Issue: 20 Vol. 6; ISSN NANOHL; ISSN 2040-3364
Publisher:
Royal Society of Chemistry
Country of Publication:
United States
Language:
English

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