Heras-Juaristi Gemma, Amador Ulises, Romero de Paz Julio, Fuentes Rodolfo O, Chinelatto Adilson L, Ritter Clemens, Fagg Duncan P, Pérez-Coll Domingo, Mather Glenn C
Instituto de Cerámica y Vidrio , CSIC , Cantoblanco , 28049 Madrid , Spain.
Facultad de Farmacia, Departamento de Quı́mica , Universidad CEU-San Pablo , Boadilla del Monte , Madrid 28668 , Spain.
Inorg Chem. 2018 Dec 3;57(23):15023-15033. doi: 10.1021/acs.inorgchem.8b02956. Epub 2018 Nov 16.
The BaZrCeYO-BaPrO perovskite system, of interest for high-temperature electrochemical applications involving mixed protonic-electronic conductivity, forms a solid-solution with a wide interval of Ba substoichiometry in the range Ba(CeZr)Pr YO, 0 ≤ x ≤ 1. Structural phase transitions mapped as a function of temperature and composition by high-resolution neutron powder diffraction and synchrotron X-ray diffraction reveal higher symmetry for lower Pr content and higher temperatures, with the largest stability field observed for rhombohedral symmetry (space group, R3̅ c). Rietveld refinement, supported by magnetic-susceptibility measurements, indicates that partitioning of the B-site cations over the A and B perovskite sites compensates Ba substoichiometry in preference to A-site vacancy formation and that multiple cations are distributed over both sites. Electron-hole transport dominates electrical conductivity in both wet and dry oxidizing conditions, with total conductivity reaching a value of ∼0.5 S cm for the x = 1 end-member in dry air at 1173 K. Higher electrical conductivity and the displacement of oxygen loss to higher temperatures with increasing Pr content both reflect the role of Pr in promoting hole formation at the expense of oxygen vacancies. In more reducing conditions (N) and at low Pr contents, conductivity is higher in humidified atmospheres (∼0.023 atm pHO) indicating a protonic contribution to transport, whereas the greater electron-hole conductivity with increasing Pr content results in lower conductivity in humidified N due to the creation of protonic defects and the consumption of holes.
BaZrCeYO-BaPrO钙钛矿体系因涉及混合质子-电子传导的高温电化学应用而备受关注,它在Ba(CeZr)PrYO(0≤x≤1)范围内形成了具有宽Ba化学计量比区间的固溶体。通过高分辨率中子粉末衍射和同步加速器X射线衍射绘制的结构相变作为温度和组成的函数,结果表明,较低的Pr含量和较高的温度具有更高的对称性,其中菱面体对称性(空间群,R3̅c)的稳定性场最大。在磁化率测量的支持下,Rietveld精修表明,B位阳离子在A位和B位钙钛矿位点上的分配优先补偿Ba化学计量比,而不是形成A位空位,并且多个阳离子分布在两个位点上。在潮湿和干燥氧化条件下,电子-空穴传输主导电导率,对于x = 1的端元,在1173 K的干燥空气中,总电导率达到约0.5 S cm的值。随着Pr含量的增加,更高的电导率以及氧损失向更高温度的位移都反映了Pr在以氧空位为代价促进空穴形成中的作用。在更还原的条件(N)下且Pr含量较低时,在潮湿气氛(∼0.023 atm pHO)中电导率更高,这表明质子对传输有贡献,而随着Pr含量增加,更大的电子-空穴电导率导致在潮湿的N中电导率降低,这是由于质子缺陷的产生和空穴的消耗。