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首页> 外文期刊>Solid state ionics >Phase equilibria, structure and properties of complex oxides in the NdFeO3 (-) (delta) - SrFeO3 (-) (delta) -SrCoO3 (-) (delta) - NdCoO3 (-) (delta) system as potential cathodes for SOFCs
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Phase equilibria, structure and properties of complex oxides in the NdFeO3 (-) (delta) - SrFeO3 (-) (delta) -SrCoO3 (-) (delta) - NdCoO3 (-) (delta) system as potential cathodes for SOFCs

机译:NdFeO3( - )(Delta) - SrFeO3( - )(Delta) - NdCOO3( - )(Delta)系统作为SOFC的潜在阴极的络合物氧化物的相平衡,结构和性质

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The phase equilibria in the NdFeO3 (-) (delta) -SrFeO3 (-) (delta) -SrCoO3 (-) (delta) -NdCoO3 (-) (delta) system were studied at 1373 K in air. The homogeneity ranges and crystal structure of Nd-1 (-) xSrxFe1 (-) yCoyO3 (-) (delta) solid solutions were determined by the X-ray powder diffraction, the unit cell parameters were refined by the Rietveld analysis. It was found that Nd-1 (-) xSrxFe1 (-) yCoyO3 (-) (delta) with 0.0 = x = 0.6 and 0.1 = y = 0.9 possesses orthorhombic structure (sp. gr. Pbnm) that reveals O-type - O'-type - O-type structural transition. The orthorhombic distortion decreases with the increasing of strontium content, as a result Nd-1 (-) xSrxFe1 (-) yCoyO3 (-) (delta) solid solutions with 0.7 = x = 0.9 and 0.1 = y = 0.9 possess the cubic structure (sp. gr. Pm3m). Isothermal-isobaric phase diagram for the NdFeO3 (-) (delta) - SrFeO3 (-) (delta) - SrCoO3 (-) (delta) - NdCoO3 (-) (delta) system at 1373 K in air has been presented. A series of samples with the overall composition Nd0.2Sr0.8Fe1 (-) yCoyO3 (-) (delta) (0.0 = y = 1.0) were characterized by the thermogravimetric analysis, iodometric titration, dilatometry and electrical conductivity measurements. The oxygen nonstoichiometry in Nd0.2Sr0.8Fe1 (-) yCoyO3 (-) (delta) (0.0 = y = 1.0) increases with increasing temperature and cobalt content. Gradual substitution of iron by cobalt in the Nd0.2Sr0.8Fe1 (-) yCoyO3 (-) (delta) oxides leads to the increase of the average thermal expansion coefficients. The electrical conductivity exhibits maximum within the range of 600-750 K and significantly increased with cobalt content at T 800 K. Chemical compatibility of Nd0.2Sr0.8Fe1 (-) yCoyO3 (-) (delta) with Ce0.8Sm0.2O2 (-) (delta) and La0.88Sr0.12Ga0.82Mg0.12O3 (-) (delta) solid electrolytes has been studied. The single cells based on the LSGM electrolyte, Sr2Ni0.75Mg0.25MoO6 anode and Nd0.2Sr0.8Fe1 (-) yCoyO3 (-) (delta) (y = 0.3 and 1.0) c
机译:NdFeO3( - )( - )(Delta)-SRFeO 3( - )(Delta)-SRCOO3( - )(Delta)-NDCOO3( - )(Delta)系统的相平衡在空气中进行了1373k。通过X射线粉末衍射测定ND-1( - - )XSRXFE1( - )XSRXFE1( - )ycoyo3( - )(δ)固溶体的均匀性范围和晶体结构,通过RIETVELD分析来改进单位电池参数。发现ND-1( - )XSRXFE1( - )Ycoyo3( - )(Delta),其0.0& = 0.6和0.1 = 0.9具有正交结构(SP.G.PBNM )揭示O型 - & O'型 - & O型结构转变。晶状体畸变随着锶含量的增加而降低,作为结果Nd-1( - )XsrxFe1( - )Ycoyo3( - )(Delta)固溶体,其固溶0.9 = x& = 0.1 =& ; = 0.9具有立方结构(SP.GR.PM3M)。已经提出了NdFeO3( - )( - ) - SRFEO3( - )(Delta) - SRCOO3( - )(Delta) - NdcoO3( - )(Delta)系统的等温 - SRFEO3( - )(Delta)系统。通过热量分析,碘量滴定,膨胀测定和导电测量,表征了一系列具有整体组合物Nd0.2SR0.8Fe1( - )Ycoyo3( - )(Delta)(0.0& = 1.0)的样品。 ND0.2SR0.8FE1( - )Ycoyo3( - )(Delta)(0.0 <= 1.0)中的氧不沸石增加随温度和钴含量的增加而增加。 ND0.2SR0.8FE1( - )Ycoyo3( - )(Delta)氧化物中钴逐渐取代铁通过氧化钴导致平均热膨胀系数的增加。电导率在600-750k的范围内显示出最大值,并且在t℃下钴含量显着增加。 800 K. ND0.2SR0.8FE1( - )Ycoyo3( - )(Delta)的化学兼容性,Ce0.8sm0.2O2( - )(Delta)和La0.88SR0.12ga0.82mg0.12O3( - )(Δ)固体已经研究过电解质。基于LSGM电解质,Sr2Ni0.75mg0.25mOO6阳极和Nd0.2Sr0.8Fe1( - )Ycoyo3( - )(Delta)(Y = 0.3和1.0)C的单细胞

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