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Exploiting a robust biopolymer network binder for an ultrahigh-areal-capacity Li-S battery

Publication ,  Journal Article
Liu, J; Galpaya, DGD; Yan, L; Sun, M; Lin, Z; Yan, C; Liang, C; Zhang, S
Published in: Energy and Environmental Science
March 1, 2017

High-loading electrodes play a crucial role in the practical applications of high-energy-density batteries, which are especially challenging for lithium-sulfur (Li-S) batteries. Herein, a mechanically robust network binder was constructed by weaving dual biopolymers (i.e., guar gum and xanthan gum) via the intermolecular binding effect of extensive functional groups in both polymers. This network binder was capable of effectively preventing polysulfides within the electrode from shuttling and, consequently, improved electrochemical performance. A remarkably high sulfur loading of 19.8 mg cm-2 and an ultrahigh areal capacity of 26.4 mA h cm-2 were achieved as a result of the robust mechanical properties of the network binder. This study paves a new way for obtaining high-energy-density batteries by the simple application of robust network biopolymer binders that are inherently low-cost and environmentally friendly.

Duke Scholars

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Published In

Energy and Environmental Science

DOI

EISSN

1754-5706

ISSN

1754-5692

Publication Date

March 1, 2017

Volume

10

Issue

3

Start / End Page

750 / 755

Related Subject Headings

  • Energy
 

Citation

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Liu, J., Galpaya, D. G. D., Yan, L., Sun, M., Lin, Z., Yan, C., … Zhang, S. (2017). Exploiting a robust biopolymer network binder for an ultrahigh-areal-capacity Li-S battery. Energy and Environmental Science, 10(3), 750–755. https://doi.org/10.1039/c6ee03033e
Liu, J., D. G. D. Galpaya, L. Yan, M. Sun, Z. Lin, C. Yan, C. Liang, and S. Zhang. “Exploiting a robust biopolymer network binder for an ultrahigh-areal-capacity Li-S battery.” Energy and Environmental Science 10, no. 3 (March 1, 2017): 750–55. https://doi.org/10.1039/c6ee03033e.
Liu J, Galpaya DGD, Yan L, Sun M, Lin Z, Yan C, et al. Exploiting a robust biopolymer network binder for an ultrahigh-areal-capacity Li-S battery. Energy and Environmental Science. 2017 Mar 1;10(3):750–5.
Liu, J., et al. “Exploiting a robust biopolymer network binder for an ultrahigh-areal-capacity Li-S battery.” Energy and Environmental Science, vol. 10, no. 3, Mar. 2017, pp. 750–55. Scopus, doi:10.1039/c6ee03033e.
Liu J, Galpaya DGD, Yan L, Sun M, Lin Z, Yan C, Liang C, Zhang S. Exploiting a robust biopolymer network binder for an ultrahigh-areal-capacity Li-S battery. Energy and Environmental Science. 2017 Mar 1;10(3):750–755.
Journal cover image

Published In

Energy and Environmental Science

DOI

EISSN

1754-5706

ISSN

1754-5692

Publication Date

March 1, 2017

Volume

10

Issue

3

Start / End Page

750 / 755

Related Subject Headings

  • Energy