Literature DB >> 31117426

La1.5Sr0.5NiMn0.5Ru0.5O6 Double Perovskite with Enhanced ORR/OER Bifunctional Catalytic Activity.

Maria Retuerto, Federico Calle-Vallejo1, Laura Pascual, Gunnar Lumbeeck2, María Teresa Fernandez-Diaz3, Mark Croft4, Jagannatha Gopalakrishnan5, Miguel A Peña, Joke Hadermann2, Martha Greenblatt6, Sergio Rojas.   

Abstract

Perovskites (ABO3) with transition metals in active B sites are considered alternative catalysts for the water oxidation to oxygen through the oxygen evolution reaction (OER) and for the oxygen reduction through the oxygen reduction reaction (ORR) back to water. We have synthesized a double perovskite (A2BB'O6) with different cations in A, B, and B' sites, namely, (La1.5Sr0.5)A(Ni0.5Mn0.5)B(Ni0.5Ru0.5)B'O6 (LSNMR), which displays an outstanding OER/ORR bifunctional performance. The composition and structure of the oxide has been determined by powder X-ray diffraction, powder neutron diffraction, and transmission electron microscopy to be monoclinic with the space group P21/ n and with cationic ordering between the ions in the B and B' sites. X-ray absorption near-edge spectroscopy suggests that LSNMR presents a configuration of ∼Ni2+, ∼Mn4+, and ∼Ru5+. This bifunctional catalyst is endowed with high ORR and OER activities in alkaline media, with a remarkable bifunctional index value of ∼0.83 V (the difference between the potentials measured at -1 mA cm-2 for the ORR and +10 mA cm-2 for the OER). The ORR onset potential ( Eonset) of 0.94 V is among the best reported to date in alkaline media for ORR-active perovskites. The ORR mass activity of LSNMR is 1.1 A g-1 at 0.9 V and 7.3 A g-1 at 0.8 V. Furthermore, LSNMR is stable in a wide potential window down to 0.05 V. The OER potential to achieve a current density of 10 mA cm-2 is 1.66 V. Density functional theory calculations demonstrate that the high ORR/OER activity of LSNMR is related to the presence of active Mn sites for the ORR- and Ru-active sites for the OER by virtue of the high symmetry of the respective reaction steps on those sites. In addition, the material is stable to ORR cycling and also considerably stable to OER cycling.

Entities:  

Keywords:  OER; ORR; bifunctional catalyst; double perovskite; metal−air batteries; regenerative fuel cells

Year:  2019        PMID: 31117426     DOI: 10.1021/acsami.9b02077

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  2 in total

1.  Sm0.5Sr0.5Co1-xNixO3-δ-A Novel Bifunctional Electrocatalyst for Oxygen Reduction/Evolution Reactions.

Authors:  Xingmei Liu; Yuwei Wang; Liquan Fan; Weichao Zhang; Weiyan Cao; Xianxin Han; Xijun Liu; Hongge Jia
Journal:  Molecules       Date:  2022-02-14       Impact factor: 4.411

2.  Development of a Bifunctional Ti-Based Gas Diffusion Electrode for ORR and OER by One- and Two-Step Pt-Ir Electrodeposition.

Authors:  Maximilian Cieluch; Pit Yannick Podleschny; Norbert Kazamer; Florian Josef Wirkert; Ulrich Wilhelm Rost; Michael Brodmann
Journal:  Nanomaterials (Basel)       Date:  2022-04-06       Impact factor: 5.076

  2 in total

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