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首页> 外文期刊>Solid state ionics >New SOFC electrode materials: The Ni-substituted LSCM-based compounds (La0.75Sr0.25)(Cr0.5Mn0.5-xNix)O3-[delta] and (La0.75Sr0.25)(Cr0.5-xNixMn0.5)O3-[delta]
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New SOFC electrode materials: The Ni-substituted LSCM-based compounds (La0.75Sr0.25)(Cr0.5Mn0.5-xNix)O3-[delta] and (La0.75Sr0.25)(Cr0.5-xNixMn0.5)O3-[delta]

机译:新的SOFC电极材料:Ni取代的LSCM基化合物(La0.75Sr0.25)(Cr0.5Mn0.5-xNix)O3-δ和(La0.75Sr0.25)(Cr0.5-xNixMn0.5 O3-δ

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摘要

New compounds based on the perovskite LSCM (La0.75Sr0.25) (Cr0.5Mn0.5)O3-[delta], have been developed. The partial substitution of Mn or Cr by Ni in LSCM has been studied and single phases were obtained under air and different reducing atmospheres. The limit of solid solution was 20% of nickel in B site. As confirmed by TEM, a partial exsolution of Ni is obtained from the reduction of LSCM nickel-substituted compounds. In all cases the substituted phases show conductivities slightly higher than those corresponding to the undoped materials. The total conductivity seems to be mainly p-type and the substitution with Ni essentially affects the Mn3+/Mn4+ valence ratio. The lower conductivities obtained under reducing atmosphere should be related to the reduction of manganese. Nevertheless the obtained conductivities are high under both atmospheres and suitable for the application of these materials as electrodes in a SOFC. A suggestive protonic contribution to the total conductivity is observed under H2 between 300C and 500C. The existence of nanoparticles of Ni at the chromo-manganite crystallites surface due to Ni exsolution process could facilitate the hydrogen dissociation promoting a protonic contribution to total conductivity. The activity and selectivity of LSCMMn0.30Ni0.20 toward the total oxidation of methane were studied and compared to those of LSCM. LSCMMn0.30Ni0.20 selectively catalyzes the complete oxidation of methane as required for a SOFC electrode.
机译:已经开发了基于钙钛矿LSCM(La0.75Sr0.25)(Cr0.5Mn0.5)O3-δ的新化合物。研究了LSCM中Mn或Cr被Ni部分取代的情况,并在空气和不同还原气氛下获得了单相。固溶极限为B位镍的20%。如通过TEM证实的,通过LSCM镍取代的化合物的还原获得Ni的部分析出。在所有情况下,取代相的电导率均略高于未掺杂相的电导率。总电导率似乎主要是p型,用Ni取代基本上会影响Mn3 + / Mn4 +的化合价比。在还原气氛下获得的较低电导率应与锰的还原有关。然而,所获得的电导率在两种气氛下都很高,并且适合于将这些材料用作SOFC中的电极。在300℃至500℃之间的氢气下,可以观察到质子对总电导率的贡献。 Ni析出过程导致铬锰矿微晶表面存在Ni纳米颗粒,可以促进氢离解,促进质子对总电导率的贡献。研究了LSCMMn0.30Ni0.20对甲烷总氧化的活性和选择性,并与LSCM进行了比较。 LSCMMn0.30Ni0.20根据SOFC电极的需要选择性催化甲烷的完全氧化。

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