[1] Seo H G,Choi Y,Jung W.Exceptionally enhanced electrode activity of (Pr,Ce)O2-δ-based cathodes for thin-film solid oxide fuel cells[J].Advanced Energy Materials,2018,8:1703647.
[2] Duan C,Kee R J,Zhu H,et al.Highly durable,coking and sulfur tolerant,fuel-flexible protonic ceramic fuel cells[J].Nature,2018,557:217-222.
[3] Badwal S P S,Giddey S,Kulkarni A,et al.Direct ethanol fuel cells for transport and stationary applications-a comprehensive review[J].Applied Energy,2015,145:80-103.
[4] Wu H,Xiao J,Zeng X,et al.A high performance direct carbon solid oxide fuel cell-A green pathway for brown coal utilization[J].Applied Energy,2019,248:679-687.
[5] Zhan Z,Barnett S A.An octane-fueled solid oxide fuel cell[J].Science,2005,308:844-747.
[6] Lu X C,Zhu J H.Cu(Pd)-impregnated La0.75Sr0.25Cr0.5Mn0.5O3-delta anodes for direct utilization of methane in SOFC[J].Solid State Ionics,2007,178:1467-1475.
[7] Toscani L M,Giangiordano F V,Nichio N,et al.In-situ Ni exsolution from NiTiO3 as potential anode for solid oxide fuel cells[J].International Journal of Hydrogen Energy,2020,45:23433-23443.
[8] Niu B,Jin F,Fu R,et al.Pd-impregnated Sr1.9VMoO6-δ double perovskite as an efficient and stable anode for solid-oxide fuel cells operating on sulfur-containing syngas[J].Electrochimica Acta,2018,274:91-102.
[9] Pena M A,Fierro J L G.Chemical structures and performance of perovskite oxides[J].Chemical Review,2001,101:1981-2017.
[10] Shi K Y,Guo L L,Liu H X,et al.Preparation and optical properties of thin-films of layered perovskite-type hybrid compounds (CnH2n+1NH3)2PbX4[J].Science and Technology of Hybrid Materials,2006,111:119-122.
[11] Jiang S P,Liu L,Khuong P O B,et al.Electrical conductivity and performance of doped LaCrO3 perovskite oxides for solid oxide fuel cells[J].Journal of Power Sources,2008,176:82-89.
[12] Lay E,Dessemond L,Gauthier G H.Synthesis and characterization of CexSr1-xCr0.5Mn0.5O3-δ perovskites as anode materials for solid oxide fuel cells (SOFC)[J].Electrochimica Acta,2016,216:420-428.
[13] Aliotta C,Liotta L F,Deganello F,et al.Direct methane oxidation on La1-xSrCrxFeyO3-δ perovskite-type oxides as potential anode for intermediate temperature solid oxide fuel cells[J].Applied Catalysis B-Environmental,2016,180:424-433.
[14] Shahid M,He C,Sankarasubramanian S,et al.Enhanced methane electrooxidation by ceria and nickel oxide impregnated perovskite anodes in solid oxide fuel cells[J].International Journal of Hydrogen Energy,2020,45:11287-11296.
[15] 庄林.弛豫时间分布法分解固体氧化物燃料电池电化学阻抗谱[J].物理化学学报,2019,35(5):457-458.
[16] Tao S W,Irvine J T S.A redox-stable efficient anode for solid-oxide fuel cells[J].Nature Materials,2003,2:320-323.
[17] Wan J,Zhu J H,Goodenough J B.La0.75Sr0.25Cr0.5Mn0.5O3-delta+Cu composite anode running on H2 and CH4 fuels[J].Solid State Ionics,2006,177:1211-1217.
[18] Horikiri F,Han LQ,Iizawa N,et al.Electrical properties of Nb-doped SrTiO3 ceramics with excess TiO2 for SOFC anodes and interconnects[J].Journal of the Electrochemical Society,2008,155:B16-B20.
[19] Fagg D P,Kharton V V,Kovalevsky A V,et al.The stability and mixed conductivity in La and Fe doped SrTiO3 in the search for potential SOFC anode materials[J].Journal of the European Ceramic Society,2001,21:1831-1835.
[20] Kim H S,Jeon Y,Kim J H,et al.Characteristics of Sr1-xYxTi1-yRuyO3+/-δ and Ru-impregnated Sr1-xYxTiO3+/-δ perovskite catalysts as SOFC anode for methane dry reforming[J].Applied Surface Science,2020,510:145450.
[21] Kim H S,Yoon S P,Yun J W,et al.Sr0.92Y0.08TiO3-delta/Sm0.2Ce0.8O2-delta anode for solid oxide fuel cells running on methane[J].International Journal of Hydrogen Energy,2012,37:16130-16139.
[22] Zhang Y,Fan H,Han M.Stability of Ni-YSZ anode for SOFCs in methane fuel:the effects of infiltrating La0.8Sr0.2FeO3-δ and Gd-doped CeO2 materials[J].Journal of the Electrochemical Society,2018,165:F756-F763.
[23] Bian L Z,Duan C,Wang L J,et al.Ce-doped La0.7Sr0.3Fe0.9Ni0.1O3-δ as symmetric electrode for high performance direct hydrocarbon solid oxide fuel cell[J].Journal of Materials Chemistry A,2017,5(29),DOI:10.1039/C7TA03001K.
[24] 陈永红,杨洋,杨雪,等.新型双钙钛矿基对称固体氧化物燃料电池的制备及性能[J].硅酸盐学报,2017,45(11):1673-1678.
[25] 杜志鸿,李媛媛,赵海雷,等.固体氧化物燃料电池双钙钛矿陶瓷阳极缺陷结构设计与性能调控[J].硅酸盐学报,2021,49(1):7-13.
[26] Huang Y H,Dass R I,Xing Z L,et al.Double perovskites as anode materials for solid-oxide fuel cells[J].Science,2006,312:254-257.
[27] Wang Z,Tian Y,Li Y.Direct CH4 fuel cell using Sr2FeMoO6 as an anode material[J].Journal of Power Sources,2011,196:6104-6109.
[28] Huang Y H,Liang G,Croft M,et al.Double-perovskite anode materials Sr2MMoO6 (M=Co,Ni) for solid oxide fuel cells[J].Chemistry of Materials,2009,21:2319-2326.
[29] Lee D,Kim D,Son S J,et al.Simultaneous A- and B- site substituted double perovskite (AA′B2O5+δ) as a new high-performance and redox-stable anode material for solid oxide fuel cells[J].Journal of Power Sources,2019,434:226743.
[30] Rath M K,Lee K T.Characterization of novel Ba2LnMoO6 (Ln=Pr and Nd) double perovskite as the anode material for hydrocarbon-fueled solid oxide fuel cells[J].Journal of Alloys and Compounds,2018,737:152-159.
[31] Sengodan S,Choi S,Jun A,et al.Layered oxygen-deficient double perovskite as an efficient and stable anode for direct hydrocarbon solid oxide fuel cells[J].Nature Materials,2014,14:205-209.
[32] Kwon O,Kim K,Joo S,et al.Self-assembled alloy nanoparticles in a layered double perovskite as a fuel oxidation catalyst for solid oxide fuel cells[J].Journal of Materials Chemistry A,2018,6:15947-15953.
[33] Hou N,Yao T,Li P,et al.A-site ordered double perovskite with in situ exsolved core-shell nanoparticles as anode for solid oxide fuel cells[J].ACS Applied Materials & Interfaces,2019,11:6995-7005.