Cellulose nanocrystals crosslinked with sulfosuccinic acid as sustainable proton exchange membranes for electrochemical energy applications

Selyanchyn, Olena and Bayer, Thomas and Klotz, Dino and Selyanchyn, Roman and Sasaki, Kazunari and Lyth, Stephen Matthew (2022) Cellulose nanocrystals crosslinked with sulfosuccinic acid as sustainable proton exchange membranes for electrochemical energy applications. Membranes, 12 (7). 658. ISSN 2077-0375 (https://doi.org/10.3390/membranes12070658)

[thumbnail of Selyanchyn-etal-Membranes-2022-Cellulose-nanocrystals-crosslinked-with-sulfosuccinic-acid]
Preview
Text. Filename: Selyanchyn_etal_Membranes_2022_Cellulose_nanocrystals_crosslinked_with_sulfosuccinic_acid.pdf
Final Published Version
License: Creative Commons Attribution 4.0 logo

Download (6MB)| Preview

Abstract

Nanocellulose is a sustainable material which holds promise for many energy-related applications. Here, nanocrystalline cellulose is used to prepare proton exchange membranes (PEMs). Normally, this nanomaterial is highly dispersible in water, preventing its use as an ionomer in many electrochemical applications. To solve this, we utilized a sulfonic acid crosslinker to simultaneously improve the mechanical robustness, water-stability, and proton conductivity (by introducing-SO3− H+ functional groups). The optimization of the proportion of crosslinker used and the crosslinking reaction time resulted in enhanced proton conductivity up to 15 mS/cm (in the fully hydrated state, at 120◦ C). Considering the many advantages, we believe that nanocellulose can act as a sustainable and low-cost alternative to conventional, ecologically problematic, perfluorosulfonic acid ionomers for applications in, e. fuel cells and electrolyzers.

ORCID iDs

Selyanchyn, Olena, Bayer, Thomas, Klotz, Dino, Selyanchyn, Roman, Sasaki, Kazunari and Lyth, Stephen Matthew ORCID logoORCID: https://orcid.org/0000-0001-9563-867X;