Improving electrochemical performance of cusi thin film by depositing Cu thin film via magnetron sputtering

B. D. Polat, O. L. Eryilmaz, O. Keleş*

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

In the present work, we deposited a bare and a (10 nm thick) Cu capped SiCu films (that contains 10 %at. Cu) by magnetron sputtering. The results showed that the top coating does not only exert remarkable favorable effects on the capacity, but also improves the capacity retention and coulombic efficiency. The galvanostatic test results showed that with C/12 rate, Cu capped SiCu film delivered 750 mAh/g after 40th cycles, and it retained stable up to 100 cycle with 98% coulombic efficiency, whilst the bare SiCu film performed a gradual decrease in capacity. We believe that during cycling, the top Cu film being ductile, form a network to prevent the electronic isolation of Si particles, or delamination. Cu atoms buffered the mechanical stress generated in the electrode following the volumetric changes. Furthermore, the surface reactivity of the SiCu electrode, hence its interaction with the electrolyte, was also changed leading to a longer cycle life electrode.

Original languageEnglish
Title of host publicationLithium-Ion Batteries
EditorsS. Meng, K. Amine, J. Wu
PublisherElectrochemical Society Inc.
Pages123-129
Number of pages7
Edition22
ISBN (Electronic)9781607685395
DOIs
Publication statusPublished - 2014
EventSymposium on Lithium-Ion Batteries - 2014 ECS and SMEQ Joint International Meeting - Cancun, Mexico
Duration: 5 Oct 20149 Oct 2014

Publication series

NameECS Transactions
Number22
Volume64
ISSN (Print)1938-6737
ISSN (Electronic)1938-5862

Conference

ConferenceSymposium on Lithium-Ion Batteries - 2014 ECS and SMEQ Joint International Meeting
Country/TerritoryMexico
CityCancun
Period5/10/149/10/14

Bibliographical note

Publisher Copyright:
© 2015 The Electrochemical Society.

Keywords

  • Anode
  • Compliant layer
  • Lithium ion batteries
  • Magnetron sputtering
  • SiCu film

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