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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Reducing the thermal conductivity of La2Mo2O9 with a trivalent praseodymium substitution for its potential use as a thermal barrier coating
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Reducing the thermal conductivity of La2Mo2O9 with a trivalent praseodymium substitution for its potential use as a thermal barrier coating

机译:降低La2MO2O9的热导率与三价镨取代,其潜在用途作为热障涂层

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(La1-xPrx)(2)Mo2O9 powders were synthesized by solid state reaction for x = 0.00, 0.10, 0.25, 0.50, 0.75 and 1.00. Dense pellets were obtained by conventional sintering in air. Their thermal stability and thermal conductivity were measured from 100 to 700 degrees C and their cell parameters refined from X-ray powder diffraction pattern by the Rietveld method. A 50 mol% isovalent substitution of lanthanum in La2Mo2O9 by praseodymium stabilizes the high temperature beta phase while reducing the thermal conductivity of the parent compound by 11-18%. For a praseodymium content x higher than 0.75, the thermal conductivity increases and a phase transition similar to that of La2Mo2O9 is observed except that the room temperature phase appears to be this time triclinic in symmetry.
机译:(LA1-XPRX)(2)通过固态反应合成MO2O9粉末,用于X = 0.00,0.10,0.25,0.50,0.75和1.00。 通过常规烧结在空气中获得致密的粒料。 它们的热稳定性和导热率从100至700℃和通过RIETVELD方法从X射线粉末衍射图中精制的细胞参数测量。 通过镨在La2MO2O9中取代镧的50mol%替价镧稳定高温β相,同时将母体化合物的导热率降低11-18%。 对于高于0.75的镨含量x,除了室温相位似乎是对称性的这一时间三级,可以观察到导热率增加和相似与La2MO2O9的相转变。

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