典型文献
                High-temperature transport properties of BaSn1-xScxO3-δ ceramic materials as promising electrolytes for protonic ceramic fuel cells
            文献摘要:
                    Protonic ceramic fuel cells(PCFCs)offer a convenient means for electrochemical conversion of chemical energy into electricity at intermediate temperatures with very high efficiency.Although BaCeO3-and BaZrO3-based complex oxides have been positioned as the most promising PCFC electrolytes,the design of new protonic conductors with improved properties is of paramount importance.Within the present work,we studied transport properties of scandium-doped barium stannate(Sc-doped BaSnO3).Our analysis included the fabrication of porous and dense BaSn1-xScxO3-δ ceramic materials(0≤x≤0.37),as well as a comprehensive analysis of their total,ionic,and electronic conductivities across all the experimental conditions realized under the PCFC operation:both air and hydrogen atmospheres with various water vapor partial pressures(p(H2O)),and a temperature range of 500-900℃.This work reports on electrolyte domain boundaries of the undoped and doped BaSnO3 for the first time,revealing that pure BaSnO3 exhibits mixed ionic-electronic conduction behavior under both oxidizing and reducing conditions,while the Sc-doping results in the gradual improvement of ionic(including protonic)conductivity,extending the electrolyte domain boundaries towards reduced atmospheres.This latter property makes the heavily-doped BaSnO3 representatives attractive for PCFC applications.
                文献关键词:
                    
                中图分类号:
                    作者姓名:
                    
                        Inna A.ZVONAREVA;Alexey M.MINEEV;Natalia A.TARASOVA;Xian-Zhu FU;Dmitry A.MEDVEDEV
                    
                作者机构:
                    Institute of High Temperature Electrochemistry,Ural Branch of the Russian Academy of Sciences,Yekaterinburg 620066,Russia;Ural Federal University,Yekaterinburg 620002,Russia;Boreskov Institute of Catalysis,Novosibirsk 630090,Russia;College of Materials Science and Engineering,Shenzhen University,Shenzhen 518060,China
                文献出处:
                    
                引用格式:
                    
                        [1]Inna A.ZVONAREVA;Alexey M.MINEEV;Natalia A.TARASOVA;Xian-Zhu FU;Dmitry A.MEDVEDEV-.High-temperature transport properties of BaSn1-xScxO3-δ ceramic materials as promising electrolytes for protonic ceramic fuel cells)[J].先进陶瓷(英文版),2022(07):1131-1143
                    
                A类:
                BaSn1,xScxO3,protonic,Protonic,PCFCs,BaCeO3,stannate,BaSnO3
                B类:
                    High,transport,properties,ceramic,materials,promising,electrolytes,fuel,cells,offer,convenient,means,electrochemical,conversion,energy,into,electricity,intermediate,temperatures,very,high,efficiency,Although,BaZrO3,complex,oxides,have,been,positioned,most,design,new,conductors,improved,paramount,importance,Within,work,studied,scandium,barium,Our,analysis,included,fabrication,porous,dense,well,comprehensive,their,total,ionic,electronic,conductivities,across,all,experimental,conditions,realized,under,operation,both,air,hydrogen,atmospheres,various,water,vapor,partial,pressures,H2O,range,This,reports,domain,boundaries,undoped,first,revealing,that,pure,exhibits,mixed,conduction,behavior,oxidizing,reducing,while,doping,results,gradual,improvement,including,conductivity,extending,towards,reduced,latter,property,makes,heavily,representatives,attractive,applications
                AB值:
                    0.5233
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