Page 36 - Read Online
P. 36

Page 14 of 15                         Wang et al. J Mater Inf 2023;3:3  https://dx.doi.org/10.20517/jmi.2022.45

               Availability of data and materials
               Not Applicable.


               Financial support and sponsorship
               This material is based upon work supported by the Department of Energy under Award Number (DE-
               FE0031652). The authors would like to thank the support and guidance from the DOE National Energy
               Technology Laboratory program managers, Jason Montgomery, Venkat Venkataraman and Andrew
               O’Connell.


               Conflicts of interest
               All authors declared that there are no conflicts of interest.


               Ethical approval and consent to participate
               Not applicable.


               Consent for publication
               Not applicable.

               Copyright
               © The Author(s) 2023.


               REFERENCES
               1.       Skinner SJ. Recent advances in Perovskite-type materials for solid oxide fuel cell cathodes. Int J Inorg Mater 2001;3:113-21.  DOI
               2.       Stambouli A, Traversa E. Solid oxide fuel cells (SOFCs): a review of an environmentally clean and efficient source of energy. Renew
                   Sustain Energy Rev 2002;6:433-55.  DOI
               3.       Schuler AJ, Wuillemin Z, Hessler-wyser A, Van Herle J. Sulfur as pollutant species on the cathode side of a SOFC system. ECS Trans
                   2009;25:2845-52.  DOI
               4.       Xiong Y, Yamaji K, Horita T, et al. Sulfur poisoning of SOFC cathodes. J Electrochem Soc 2009;156:B588-92.  DOI
               5.       Wang F, Kishimoto H, Ishiyama T, et al. A review of sulfur poisoning of solid oxide fuel cell cathode materials for solid oxide fuel
                   cells. J Power Sources 2020;478:228763.  DOI
               6.       Liu RR, Taniguchi S, Shiratori Y, Ito K, Sasaki K. Influence of SO  on the long-term durability of SOFC cathodes. ECS Trans
                                                                 2
                   2011;35:2255-60.  DOI
               7.       Wang F, Yamaji K, Cho D, et al. Sulfur poisoning on La Sr Co Fe O  cathode for SOFCs. J Electrochem Soc 2011;158:B1391-7.
                                                        0.6  0.4  0.2  0.8  3
                   DOI
               8.       Wang DJ, Jing L. Effect of SO  on performance of solid oxide fuel cell cathodes. Available from: https://www.semanticscholar.org/
                                       2
                   paper/Effect-of-SO2-on-Performance-of-Solid-Oxide-Fuel-De-jun-Jing/82c3339827f4bedfe62b0270ecab17a1aac3d0ca#citing-papers
                   [Last accessed on 9 Mar 2023].
               9.       Wang F, Yamaji K, Cho D, et al. Effect of strontium concentration on sulfur poisoning of LSCF cathodes. Solid State Ionics
                   2012;225:157-60.  DOI
               10.      Wang F, Yamaji K, Cho D, et al. Evaluation of sulfur dioxide poisoning for LSCF cathodes. Fuel Cells 2013;13:520-5.  DOI
               11.      Wang C, Jiang SP. Mechanism of SO  poisoning on the electrochemical activity of LSCF and LSM electrodes. ECS Trans
                                              2
                   2015;68:1023-9.  DOI
               12.      Wang F, Kishimoto H, Develos-bagarinao K, Yamaji K, Horita T, Yokokawa H. Interrelation between sulfur poisoning and
                   performance degradation of LSCF cathode for SOFCs. J Electrochem Soc 2016;163:F899-904.  DOI
               13.      Darvish S, Asadikiya M, Hu B, Singh P, Zhong Y. Thermodynamic prediction of the effect of CO  to the stability of (La Sr )
                                                                                                    0.8
                                                                                    2
                                                                                                      0.2 0.98
                   MnO  system. Int J Hydrogen Energy 2016;41:10239-48.  DOI
                       3±δ
               14.      Darvish S, Gopalan S, Zhong Y. Thermodynamic stability maps for the La Sr Co Fe O -CO -O  system for application in solid
                                                                            0.8
                                                                      0.4
                                                                         0.2
                                                                                     2
                                                                                   2
                                                                               3±δ
                                                                    0.6
                   oxide fuel cells. J Power Sources 2016;336:351-9.  DOI
               15.      Darvish S, Wang CC, Jiang SP, Zhong Y. Thermodynamic stability mapping and electrochemical study of La Sr Co Fe O  (x =
                                                                                           1-x  x  0.2  0.8  3±δ
                   0.2-0.4) as a cathode of solid oxide fuel cells in the presence of SO . Electrochim Acta 2018;287:68-77.  DOI
                                                              2
               16.      Darvish S, Hu B, Singh P, Zhong Y. Thermodynamic and experimental evaluation of La Sr MnO   cathode in presence of Cr-
                                                                               1-x  x  3±δ
                   containing humidified air. JOM 2019;71:3814-24.  DOI
               17.      Wang R, Parent LR, Gopalan S, Zhong Y. Experimental and computational investigations on the SO  poisoning of (La Sr )  MnO   3
                                                                                                  0.2 0.95
                                                                                    2
                                                                                                0.8
                   cathode materials. Adv Powder Mater 2023;2:100062.  DOI
   31   32   33   34   35   36   37   38   39   40   41