4.8 Article

Effect of lithiation on the elastic moduli of carbon fibres

Journal

CARBON
Volume 185, Issue -, Pages 234-241

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.carbon.2021.09.037

Keywords

Carbon fiber electrode; Lithium-ion battery; Structural battery; Elastic modulus; Volume expansion

Funding

  1. European Union, Clean Sky Joint Undertaking 2, Horizon 2020 [738085]
  2. USAF [FA9550-17-1-0338]
  3. German Ministry for Economic Affairs and Energy (BMWi) within the project 'IMBAT' [ZF4019009RE7]
  4. Swedish National Space Agency [2020-00256]
  5. Formas [2020-00256] Funding Source: Formas

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This study investigates the moduli changes of carbon fibre electrodes under different lithiation states, revealing that the transverse modulus of the lithiated fibre is more than double that of the pristine and delithiated fibres.
Carbon fibre electrodes can enable a solid-state battery to carry mechanical load as normal construction materials. The multifunctionality is promising for most lightweight applications. Like all electrode materials, both volume and elastic moduli of the carbon fibre electrodes change during battery cycling. Such changes jeopardize the mechanical integrity of the battery. Due to the challenging corrosion problem of the lithiated component in air, the effect of lithiation on the carbon fibre's elastic moduli has yet to be explored. Also, robust data on the expansion of carbon fibres from lithiation are lacking. In the present work, we demonstrate a method and perform tests of corrosion protected carbon fibres in scanning electron microscope. The volume, and longitudinal and transverse moduli of a carbon fibre at three states of lithiation are determined and compared. The transverse modulus of the lithiated fibre is found to be more than double that of the pristine and delithiated fibres. (c) 2021 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).

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