Ivanova, N. B., Ovchinnikov, S. G., Korshunov, M. M., Eremin, I. M., & Kazak, N. V. (2009). Specific features of spin, charge, and orbital ordering in cobaltites. Physics-Uspekhi, 52(8), 789-810. doi:10.3367/ufne.0179.200908b.0837
Nakajima, T., Ichihara, M., & Ueda, Y. (2005). New A-site Ordered Perovskite Cobaltite LaBaCo2O6: Synthesis, Structure, Physical Property and Cation Order–Disorder Effect. Journal of the Physical Society of Japan, 74(5), 1572-1577. doi:10.1143/jpsj.74.1572
Strandbakke, R., Cherepanov, V. A., Zuev, A. Y., Tsvetkov, D. S., Argirusis, C., Sourkouni, G., … Norby, T. (2015). Gd- and Pr-based double perovskite cobaltites as oxygen electrodes for proton ceramic fuel cells and electrolyser cells. Solid State Ionics, 278, 120-132. doi:10.1016/j.ssi.2015.05.014
[+]
Ivanova, N. B., Ovchinnikov, S. G., Korshunov, M. M., Eremin, I. M., & Kazak, N. V. (2009). Specific features of spin, charge, and orbital ordering in cobaltites. Physics-Uspekhi, 52(8), 789-810. doi:10.3367/ufne.0179.200908b.0837
Nakajima, T., Ichihara, M., & Ueda, Y. (2005). New A-site Ordered Perovskite Cobaltite LaBaCo2O6: Synthesis, Structure, Physical Property and Cation Order–Disorder Effect. Journal of the Physical Society of Japan, 74(5), 1572-1577. doi:10.1143/jpsj.74.1572
Strandbakke, R., Cherepanov, V. A., Zuev, A. Y., Tsvetkov, D. S., Argirusis, C., Sourkouni, G., … Norby, T. (2015). Gd- and Pr-based double perovskite cobaltites as oxygen electrodes for proton ceramic fuel cells and electrolyser cells. Solid State Ionics, 278, 120-132. doi:10.1016/j.ssi.2015.05.014
Frontera, C., Caneiro, A., Carrillo, A. E., Oró-Solé, J., & García-Muñoz, J. L. (2005). Tailoring Oxygen Content on PrBaCo2O5+δ Layered Cobaltites. Chemistry of Materials, 17(22), 5439-5445. doi:10.1021/cm051148q
Fauth, F., Suard, E., Caignaert, V., Domengès, B., Mirebeau, I., & Keller, L. (2001). Interplay of structural, magnetic and transport properties in thelayered Co-based perovskite LnBaCo 2 O 5 (Ln = Tb, Dy, Ho). The European Physical Journal B, 21(2), 163-174. doi:10.1007/pl00011119
Luo, W., & Wang, F. (2006). Powder X-ray diffraction and Rietveld analysis of La1−xBaxCoO3 (0<x≤0.5). Powder Diffraction, 21(4), 304-306. doi:10.1154/1.2358363
Pang, S., Jiang, X., Li, X., Su, Z., Xu, H., Xu, Q., & Chen, C. (2012). Characterization of cation-ordered perovskite oxide LaBaCo2O5+δ as cathode of intermediate-temperature solid oxide fuel cells. International Journal of Hydrogen Energy, 37(8), 6836-6843. doi:10.1016/j.ijhydene.2012.01.056
Pang, S., Jiang, X., Li, X., Wang, Q., & Su, Z. (2012). A comparative study of electrochemical performance of La0.5Ba0.5CoO3−δ and La0.5Ba0.5CoO3−δ–Gd0.1Ce0.9O1.95 cathodes. International Journal of Hydrogen Energy, 37(3), 2157-2165. doi:10.1016/j.ijhydene.2011.09.156
Bernuy-Lopez, C., Høydalsvik, K., Einarsrud, M.-A., & Grande, T. (2016). Effect of A-Site Cation Ordering on Chemical Stability, Oxygen Stoichiometry and Electrical Conductivity in Layered LaBaCo2O5+δ Double Perovskite. Materials, 9(3), 154. doi:10.3390/ma9030154
Garcés, D., Setevich, C. F., Caneiro, A., Cuello, G. J., & Mogni, L. (2014). Effect of cationic order–disorder on the transport properties of LaBaCo2O6–δand La0.5Ba0.5CoO3–δperovskites. Journal of Applied Crystallography, 47(1), 325-334. doi:10.1107/s1600576713031233
Pang, S. L., Jiang, X. N., Li, X. N., Wang, Q., & Zhang, Q. Y. (2012). Structural stability and high-temperature electrical properties of cation-ordered/disordered perovskite LaBaCoO. Materials Chemistry and Physics, 131(3), 642-646. doi:10.1016/j.matchemphys.2011.10.029
Suard, E., Fauth, F., & Caignaert, V. (2000). Rhombohedral distortion in the new disordered LaBaCo2O6 perovskite. Physica B: Condensed Matter, 276-278, 254-255. doi:10.1016/s0921-4526(99)01437-4
Goupil, G., Delahaye, T., Sala, B., Lefebvre Joud, F., & Gauthier, G. (2014). Selection and study of basic layered cobaltites as mixed ionic–electronic conductors for proton conducting fuel cells. Solid State Ionics, 263, 15-22. doi:10.1016/j.ssi.2014.04.022
Masuda, H., Fujita, T., Miyashita, T., Soda, M., Yasui, Y., Kobayashi, Y., & Sato, M. (2003). Transport and Magnetic Properties of R1-xAxCoO3(R = La, Pr and Nd; A = Ba, Sr and Ca). Journal of the Physical Society of Japan, 72(4), 873-878. doi:10.1143/jpsj.72.873
Dyadkin, V., Pattison, P., Dmitriev, V., & Chernyshov, D. (2016). A new multipurpose diffractometer PILATUS@SNBL. Journal of Synchrotron Radiation, 23(3), 825-829. doi:10.1107/s1600577516002411
Hauback, B., Fjellvåg, H., Steinsvoll, O., Johansson, K., Buset, O. T., & Jørgensen, J. (2000). The high resolution Powder Neutron Diffractometer PUS at the JEEP II reactor at Kjeller in Norway. Journal of Neutron Research, 8(3), 215-232. doi:10.1080/10238160008200055
Rietveld, H. M. (1969). A profile refinement method for nuclear and magnetic structures. Journal of Applied Crystallography, 2(2), 65-71. doi:10.1107/s0021889869006558
Fauth, F., Suard, E., & Caignaert, V. (2001). Intermediate spin state ofCo3+andCo4+ions inLa0.5Ba0.5CoO3evidenced by Jahn-Teller distortions. Physical Review B, 65(6). doi:10.1103/physrevb.65.060401
Radaelli, P. G., & Cheong, S.-W. (2002). Structural phenomena associated with the spin-state transition inLaCoO3. Physical Review B, 66(9). doi:10.1103/physrevb.66.094408
Lamonova, K. V., Zhitlukhina, E. S., Babkin, R. Y., Orel, S. M., Ovchinnikov, S. G., & Pashkevich, Y. G. (2011). Intermediate-Spin State of a 3d Ion in the Octahedral Environment and Generalization of the Tanabe–Sugano Diagrams. The Journal of Physical Chemistry A, 115(46), 13596-13604. doi:10.1021/jp2071265
Toulemonde, O., N’Guyen, N., Studer, F., & Traverse, A. (2001). Spin State Transition in LaCoO3 with Temperature or Strontium Doping as Seen by XAS. Journal of Solid State Chemistry, 158(2), 208-217. doi:10.1006/jssc.2001.9094
Troyanchuk, I. O., Bushinsky, M. V., Sikolenko, V. V., & Ritter, C. (2019). Spin Crossover and Magnetic Properties of Ba-Substituted Cobaltites. Journal of Experimental and Theoretical Physics, 128(1), 98-104. doi:10.1134/s1063776119010047
Kumar, D., & Banerjee, A. (2013). Coexistence of interacting ferromagnetic clusters and small antiferromagnetic clusters in La0.5Ba0.5CoO3. Journal of Physics: Condensed Matter, 25(21), 216005. doi:10.1088/0953-8984/25/21/216005
Rautama, E.-L., Boullay, P., Kundu, A. K., Caignaert, V., Pralong, V., Karppinen, M., & Raveau, B. (2008). Cationic Ordering and Microstructural Effects in the Ferromagnetic Perovskite La0.5Ba0.5CoO3: Impact upon Magnetotransport Properties. Chemistry of Materials, 20(8), 2742-2750. doi:10.1021/cm703314p
Efros, A. L., & Shklovskii, B. I. (1975). Coulomb gap and low temperature conductivity of disordered systems. Journal of Physics C: Solid State Physics, 8(4), L49-L51. doi:10.1088/0022-3719/8/4/003
Mott, N. F. (1968). Conduction in glasses containing transition metal ions. Journal of Non-Crystalline Solids, 1(1), 1-17. doi:10.1016/0022-3093(68)90002-1
Phelan, D., Yu, J., & Louca, D. (2008). Jahn-Teller spin polarons in perovskite cobaltites. Physical Review B, 78(9). doi:10.1103/physrevb.78.094108
Ambegaokar, V., Halperin, B. ., & Langer, J. . (1972). Theory of hopping conductivity in disordered systems. Journal of Non-Crystalline Solids, 8-10, 492-496. doi:10.1016/0022-3093(72)90182-2
Malyshkin, D., Novikov, A., Tsvetkov, D., & Zuev, A. (2018). Preparation, oxygen nonstoichiometry and defect structure of double perovskite LaBaCo2O6–δ. Materials Letters, 229, 324-326. doi:10.1016/j.matlet.2018.07.046
Malyshkin, D. A., Novikov, A. Y., Sereda, V. V., Ivanov, I. L., Tsvetkov, D. S., & Zuev, A. Y. (2018). In Situ and ex Situ Study of Cubic La0.5Ba0.5CoO3−δ to Double Perovskite LaBaCo2O6−δ Transition and Formation of Domain Textured Phases with Fast Oxygen Exchange Capability. Inorganic Chemistry, 57(19), 12409-12416. doi:10.1021/acs.inorgchem.8b02167
Bernuy-Lopez, C., Rioja-Monllor, L., Nakamura, T., Ricote, S., O’Hayre, R., Amezawa, K., … Grande, T. (2018). Effect of Cation Ordering on the Performance and Chemical Stability of Layered Double Perovskite Cathodes. Materials, 11(2), 196. doi:10.3390/ma11020196
Bausá, N., Solís, C., Strandbakke, R., & Serra, J. M. (2017). Development of composite steam electrodes for electrolyzers based on barium zirconate. Solid State Ionics, 306, 62-68. doi:10.1016/j.ssi.2017.03.020
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