首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Polymorphism in the family of Ln(6-x)MoO(12-delta) (Ln = La, Gd-Lu; x=0, 0.5) oxygen ion- and proton-conducting materials
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Polymorphism in the family of Ln(6-x)MoO(12-delta) (Ln = La, Gd-Lu; x=0, 0.5) oxygen ion- and proton-conducting materials

机译:LN(6-X)MOO(12-δ)(LN = LA,GD-LU; x = 0,0.5)氧离子和质子导电材料的多态性

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摘要

The formation of Ln(6-x)MoO(12-delta) (Ln = La, Gd, Dy, Ho, Er, Tm, Yb, Lu; x = 0, 0.5) rare-earth molybdates from mechanically activated oxide mixtures has been studied in the range 900-1600 degrees C. The morphotropy and polymorphism (thermodynamic phase and kinetic (growth-related) transitions) of the Ln(6-x)MoO(12-delta) (Ln = La, Gd-Lu; x = 0, 0.5) molybdates have been analyzed in detail. As a result we have observed two new types of oxygen ion-and proton-conducting materials with bixbyite (R (3) over bar, no. 206) and rhombohedral (R (3) over bar, no. 148) structures in the family of Ln(6-x)MoO(12-delta) (Ln = La, Gd-Lu; x = 0, 0.5) molybdates. The heavy rare-earth molybdates Ln(6-x)MoO(12-delta) (Ln = Er, Tm, Yb; x = 0, 0.5) have been shown for the first time to undergo an order-disorder (rhombohedral-bixbyite) phase transition at 1500-1600 degrees C, and we have obtained compounds and solid solutions with the bixbyite structure (Ia (3) over bar). The stability range of the rhombohedral phase (R-3) increases with decreasing Ln ionic radius across the Ln(6-x)MoO(12-delta) (Ln = Er, Tm, Yb, Lu) series. We have detected a proton contribution to the conductivity of the rhombohedral La5.5MoO11.25 (2 10(-4) S cm(-1) at 600 degrees C in wet air) and high-temperature polymorph Yb6MoO12-delta bixbyite structure, (R (3) over bar) below 600 degrees C. At these temperatures, rhombohedral (R (3) over bar) Yb6MoO12-delta seems to be an oxygen ion conductor (Ea = 0.53-0.58 eV). The total conductivity of rhombohedral (R (3) over bar) Yb6MoO12 exceeds that of bixbyite Yb6MoO12-delta by more than one order of magnitude and is 3-10(-5) S cm(-1) at 500 degrees C. According to their high-temperature (T > 600 degrees C) activation energies, the lanthanum and ytterbium molybdates studied here are mixed electron-ion conductors.
机译:LN(6-X)MOO(12-δ)(LN = LA,Gd,Dy,HO,ER,Tm,Yb,Lu; x = 0,0.5)稀土钼酸盐从机械活化氧化物混合物中的稀土钼酸盐的形成具有在900-1600摄氏度的范围内研究了Morphotopy和多态性(6-x)moo(12-δ)(12-δ)(ln = la,gd-lu的热力学相和动力学(生长相关)转变)。已经详细分析了X = 0,0.5)钼酸盐。结果,我们已经观察了两种新型氧离子和质子导电材料,其中Bixyite(R(3),没有。206)和rhombohedral(R(3)在酒吧,没有。148)结构LN(6-x)moo(12-delta)(ln = la,gd-lu; x = 0,0.5)钼酸盐。首次显示重稀土钼酸盐LN(6-X)MOO(12-δ)(12-δ)(LN = ER,TM,YB; x = 0,0.5)进行秩序障碍(菱形 - BixByite )在1500-1600℃下的相转变,并用Bixyite结构(Ia(3)含有Bar)获得化合物和固溶体。菱形相(R-3)的稳定范围随着LN(6-X)MOO(12-Δ)(LN = ER,TM,YB,LU)系列的降低而降低的I离子半径。我们已经检测到湿空气中600摄氏度的rhombeheDral1a5moo11.25(2 10(-4)Cm(-1)的电导率的质子贡献)和高温多晶型Yb6moo12-Δbixyite结构,( R(3)在杆上)低于600℃。在这些温度下,rhombohedral(R(3)上方)Yb6moo12-Δα似乎是氧离子导体(EA = 0.53-0.58eV)。 rhombehedral(R(3)上方的rb6moo12的总电导率超过Bixyite Yb6moo12-δ的大量数量级超过了Bixyite Yb6moo12-Δ的倍数,并且在500摄氏度下是3-10(-5)厘米(-1)。它们的高温(T> 600摄氏度)活化能量,本文研究的镧和Ytterbium钼酸酯是混合电子离子导体。

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