Correlation between Structural and Transport Properties of Ca-Doped La Nickelates and Their Electrochemical Performance
This work presents the results from a study of the structure and transport properties of Ca-doped La2NiO4+δ. La2−xCaxNiO4+δ (x = 0–0.4) materials that were synthesized via combustion of organic-nitrate precursors and characterized by X-ray diffraction (XRD), in situ XRD using synchrotron radiation,...
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Published in | Crystals (Basel) Vol. 11; no. 3; p. 297 |
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Main Authors | , , , , , , , , , |
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Abstract | This work presents the results from a study of the structure and transport properties of Ca-doped La2NiO4+δ. La2−xCaxNiO4+δ (x = 0–0.4) materials that were synthesized via combustion of organic-nitrate precursors and characterized by X-ray diffraction (XRD), in situ XRD using synchrotron radiation, thermogravimetric analysis (TGA) and isotope exchange of oxygen with C18O2. The structure was defined as orthorhombic (Fmmm) for x = 0 and tetragonal (I4/mmm) for x = 0.1–0.4. Changes that occurred in the unit cell parameters and volume as the temperature changed during heating were shown to be caused by the excess oxygen loss. Typical for Ruddlesden–Popper phases, oxygen mobility and surface reactivity decreased as the Ca content was increased due to a reduction in the over-stoichiometric oxygen content with the exception of x = 0.1. This composition demonstrated its superior oxygen transport properties compared to La2NiO4+δ due to the enhanced oxygen mobility caused by structural features. Electrochemical data obtained showed relatively low polarization resistance for the electrodes with a low Ca content, which correlates well with oxygen transport properties. |
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AbstractList | This work presents the results from a study of the structure and transport properties of Ca-doped La2NiO4+δ. La2−xCaxNiO4+δ (x = 0–0.4) materials that were synthesized via combustion of organic-nitrate precursors and characterized by X-ray diffraction (XRD), in situ XRD using synchrotron radiation, thermogravimetric analysis (TGA) and isotope exchange of oxygen with C18O2. The structure was defined as orthorhombic (Fmmm) for x = 0 and tetragonal (I4/mmm) for x = 0.1–0.4. Changes that occurred in the unit cell parameters and volume as the temperature changed during heating were shown to be caused by the excess oxygen loss. Typical for Ruddlesden–Popper phases, oxygen mobility and surface reactivity decreased as the Ca content was increased due to a reduction in the over-stoichiometric oxygen content with the exception of x = 0.1. This composition demonstrated its superior oxygen transport properties compared to La2NiO4+δ due to the enhanced oxygen mobility caused by structural features. Electrochemical data obtained showed relatively low polarization resistance for the electrodes with a low Ca content, which correlates well with oxygen transport properties. |
Author | Filonova, Elena Belyaev, Vladimir Sadovskaya, Ekaterina Pikalova, Elena Shmakov, Alexander Vinokurov, Zakhar Yeremeev, Nikita Sadykov, Vladislav Kolchugin, Alexander Mishchenko, Denis |
Author_xml | – sequence: 1 givenname: Elena orcidid: 0000-0001-8176-9417 surname: Pikalova fullname: Pikalova, Elena – sequence: 2 givenname: Vladislav orcidid: 0000-0003-2404-0325 surname: Sadykov fullname: Sadykov, Vladislav – sequence: 3 givenname: Ekaterina surname: Sadovskaya fullname: Sadovskaya, Ekaterina – sequence: 4 givenname: Nikita surname: Yeremeev fullname: Yeremeev, Nikita – sequence: 5 givenname: Alexander surname: Kolchugin fullname: Kolchugin, Alexander – sequence: 6 givenname: Alexander surname: Shmakov fullname: Shmakov, Alexander – sequence: 7 givenname: Zakhar orcidid: 0000-0002-2737-098X surname: Vinokurov fullname: Vinokurov, Zakhar – sequence: 8 givenname: Denis orcidid: 0000-0001-8822-5148 surname: Mishchenko fullname: Mishchenko, Denis – sequence: 9 givenname: Elena orcidid: 0000-0002-7273-7525 surname: Filonova fullname: Filonova, Elena – sequence: 10 givenname: Vladimir surname: Belyaev fullname: Belyaev, Vladimir |
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CitedBy_id | crossref_primary_10_1016_j_ssi_2022_115903 crossref_primary_10_3390_ma15176148 crossref_primary_10_3390_app12083747 crossref_primary_10_1016_j_jallcom_2024_173648 crossref_primary_10_1134_S1023193523010068 crossref_primary_10_3390_cryst12030344 crossref_primary_10_31857_S0424857023010206 crossref_primary_10_3390_membranes12121222 crossref_primary_10_1016_j_ijhydene_2023_01_343 crossref_primary_10_1016_j_cattod_2022_10_018 crossref_primary_10_1016_j_jpowsour_2023_233505 crossref_primary_10_3390_membranes13080698 |
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