A robust zirconium amino acid metal-organic framework for proton conduction.

Wang, Sujing; Wahiduzzaman, Mohammad; Davis, Louisa; Tissot, Antoine; Shepard, William; Marrot, Jérôme; Martineau-Corcos, Charlotte; Hamdane, Djemel et al. · Nat Commun · 2018

basic_science · Level V

Where this comes from

Abstract

Proton conductive materials are of significant importance and highly desired for clean energy-related applications. Discovery of practical metal-organic frameworks (MOFs) with high proton conduction remains a challenge due to the use of toxic chemicals, inconvenient ligand preparation and complication of production at scale for the state-of-the-art candidates. Herein, we report a zirconium-MOF, MIP-202(Zr), constructed from natural α-amino acid showing a high and steady proton conductivity of 0.011 S cm<sup>-1</sup> at 363 K and under 95% relative humidity. This MOF features a cost-effective, green and scalable preparation with a very high space-time yield above 7000 kg m<sup>-3</sup> day<sup>-1</sup>. It exhibits a good chemical stability under various conditions, including solutions of wide pH range and boiling water. Finally, a comprehensive molecular simulation was carried out to shed light on the proton conduction mechanism. All together these features make MIP-202(Zr) one of the most promising candidates to approach the commercial benchmark Nafion.

Medical subject headings