Anhydrous Superprotonic Conductivity in the Zirconium Acid Triphosphate ZrH5(PO4)3**

Author:

Fop Sacha12ORCID,Vivani Riccardo34,Masci Silvia5,Casciola Mario5,Donnadio Anna34

Affiliation:

1. The Chemistry Department University of Aberdeen Aberdeen AB24 3UE UK

2. ISIS Facility Rutherford Appleton Laboratory Harwell OX11 0QX UK

3. Department of Pharmaceutical Sciences University of Perugia Via del Liceo 1 06123 Perugia Italy

4. CEMIN—Centro di Eccellenza Materiali Innovativi Nanostrutturali per Applicazioni Chimiche Fisiche e Biomediche University of Perugia Via Elce di Sotto 8 06123 Perugia Italy

5. Department of Chemistry Biology and Biotechnologies University of Perugia Via Elce di Sotto 8 06123 Perugia Italy

Abstract

AbstractThe development of solid‐state proton conductors with high proton conductivity at low temperatures is crucial for the implementation of hydrogen‐based technologies for portable and automotive applications. Here, we report on the discovery of a new crystalline metal acid triphosphate, ZrH5(PO4)3 (ZP3), which exhibits record‐high proton conductivity of 0.5–3.1×10−2 S cm−1 in the range 25–110 °C in anhydrous conditions. This is the highest anhydrous proton conductivity ever reported in a crystalline solid proton conductor in the range 25–110 °C. Superprotonic conductivity in ZP3 is enabled by extended defective frustrated hydrogen bond chains, where the protons are dynamically disordered over two oxygen centers. The high proton conductivity and stability in anhydrous conditions make ZP3 an excellent candidate for innovative applications in fuel cells without the need for complex water management systems, and in other energy technologies requiring fast proton transfer.

Publisher

Wiley

Subject

General Medicine

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