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      Transition from perovskite to misfit-layered structure materials: a highly oxygen deficient and stable oxygen electrode catalyst

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          Abstract

          Despite the recent substantial progress in reversible protonic ceramic cells (RPCCs) it remains essential to further develop oxygen electrode materials that show superior activity and stability for oxygen reduction and evolution reactions due to the intrinsically sluggish kinetics of oxygen electrode reactions at lower temperature (<700 °C).

          Abstract

          Despite the recent substantial progress in reversible protonic ceramic cells (RPCCs) it remains essential to further develop oxygen electrode materials that show superior activity and stability for oxygen reduction and evolution reactions due to the intrinsically sluggish kinetics of oxygen electrode reactions at lower temperature (<700 °C). We report a novel misfit-layered compound Gd 0.3Ca 2.7Co 3.82Cu 0.18O 9−δ (GCCCO) as a superior and durable bifunctional oxygen electrode material for RPCCs. The maximum power densities achieved with GCCCO cells are notably high, reaching 1.16 and 2.05 W cm −2 at 600 and 700 °C, respectively, in the fuel cell mode, surpassing previously reported results. Moreover, in the electrolysis mode, the GCCCO cells reached current densities of −1.53 and −9.35 A cm −2 at 500 and 700 °C, respectively, at an applied voltage of 1.5 V. The superior catalytic performances of GCCCO are correlated to the oxygen defect rich structure, triple (O 2−/H +/e )-conducting property, needle-like grain morphology, and suitable thermal expansion coefficient.

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                Author and article information

                Contributors
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                Journal
                EESNBY
                Energy & Environmental Science
                Energy Environ. Sci.
                Royal Society of Chemistry (RSC)
                1754-5692
                1754-5706
                April 21 2021
                2021
                : 14
                : 4
                : 2472-2484
                Affiliations
                [1 ]HMC
                [2 ]Department of Nanotechnology and Advanced Materials Engineering
                [3 ]Sejong University
                [4 ]Seoul 05006
                [5 ]Korea
                [6 ]School of Energy Materials and Chemical Engineering
                [7 ]Korea University of Technology and Education
                [8 ]Cheonan 31253
                [9 ]Department of Materials Science and Engineering, Chonnam National University
                [10 ]Gwangju 61186
                [11 ]Pohang Accelerator Laboratory
                [12 ]Pohang 37673
                [13 ]Maryland Energy Innovation Institute
                [14 ]Department of Materials Science and Engineering
                [15 ]University of Maryland
                [16 ]College Park
                [17 ]USA
                Article
                10.1039/D0EE02799E
                d8d8469f-7fd6-4029-ad5f-2d53680fa327
                © 2021

                http://rsc.li/journals-terms-of-use

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