Issue 42, 2018

Ultrastretchable carbon nanotube composite electrodes for flexible lithium-ion batteries

Abstract

Ultra-stretchable carbon nanotube (CNT) composite electrodes for lithium-ion batteries are fabricated by coating CNT films and active material powders on biaxially pre-strained polydimethylsiloxane (PDMS) substrates. The wrinkled structures that form during the pre-straining and release process extend along the strain axis to protect the CNT composite structures from fracture. The CNT composites demonstrate excellent stability and high durability with resistance increase of less than 12% after 2000 cycles at 150% strain. Both CNT/Li4Ti5O12 (LTO) anodes and CNT/Li(Ni1/3Co1/3Mn1/3)O2 (NCM) cathodes maintain excellent electrochemical properties at cyclic 150% strain in different axes. The full lithium-ion battery consisting of the stretchable CNT/LTO anode and CNT/NCM cathode is able to withstand 150% strain in different axes without large decreases in performance. Stretchable batteries fabricated by the scalable, highly efficient, and low-cost biaxial pre-strain process with excellent durability and electrochemical properties will have potential applications in flexible devices.

Graphical abstract: Ultrastretchable carbon nanotube composite electrodes for flexible lithium-ion batteries

Supplementary files

Article information

Article type
Paper
Submitted
29 Jun 2018
Accepted
16 Oct 2018
First published
16 Oct 2018

Nanoscale, 2018,10, 19972-19978

Author version available

Ultrastretchable carbon nanotube composite electrodes for flexible lithium-ion batteries

Y. Yu, Y. Luo, H. Wu, K. Jiang, Q. Li, S. Fan, J. Li and J. Wang, Nanoscale, 2018, 10, 19972 DOI: 10.1039/C8NR05241G

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