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  4. In situ raman spectroscopy on silicon nanowire anodes integrated in lithium ion batteries
 
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2019
Journal Article
Title

In situ raman spectroscopy on silicon nanowire anodes integrated in lithium ion batteries

Abstract
Rapid decay of silicon anodes during lithiation poses a significant challenge in application of silicon as an anode material in lithium ion batteries. In situ Raman spectroscopy is a powerful method to study the relationship between structural and electrochemical data during electrode cycling and to allow the observation of amorphous as well as liquid and transient species in a battery cell. Herein, we present in situ Raman spectroscopy on high capacity electrode using uncoated and carbon-coated silicon nanowires during first lithiation and delithiation cycle in an optimized lithium ion battery setup and complement the results with operando X-ray reflection diffraction measurements. During lithiation, we were able to detect a new Raman signal at 1859 cm−1 especially on uncoated silicon nanowires. The detailed in situ Raman measurement of the first lithiation/delithiation cycle allowed to differentiate between morphology changes of the electrode as well as interphase formation from electrolyte components.
Author(s)
Krause, Andreas
NaMLab gGmbH / CfAED - TU Dresden
Tkacheva, Olga
NaMLab gGmbH
Omar, Ahmad
IFW Dresden
Langklotz, Ulrike
TU Dresden
Giebeler, Lars
IFW Dresden
Dörfler, Susanne  
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Fauth, F.
CELLS-ALBA Synchrotron
Mikolajick, Thomas
NaMLab gGmbH / CfAED - TU Dresden
Weber, Walter M.
NaMLab gGmbH / CfAED - TU Dresden
Journal
Journal of the Electrochemical Society  
Conference
International Meeting on Lithium Batteries (IMLB) 2018  
Open Access
DOI
10.1149/2.0541903jes
Language
English
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Keyword(s)
  • energy storage

  • in situ raman

  • lithium battery

  • silicon nanowire

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