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首页> 外文期刊>Journal of Materials Science >Formation of niobium-tantalum pentoxide orthorhombic solid solutions under chlorine-bearing atmospheres
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Formation of niobium-tantalum pentoxide orthorhombic solid solutions under chlorine-bearing atmospheres

机译:含氯气氛下五氧化二铌-钽斜方晶系固溶体的形成

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摘要

This paper studies, by means of X-ray diffraction (XRD), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDXS), the structural changes suffered by amorphous hydrated Nb oxide and mixtures of amorphous and crystalline Nb and Ta oxides subjected to thermal treatments in air and chlorine atmospheres. The air heating of amorphous Nb2O5·nH2O leads to different crystalline phases depending on the working temperature. The hexagonal phase of Nb2O5 is obtained at 773 K and the monoclinic phase β-Nb2O5 is obtained at 1173 K. The thermal treatment of amorphous Nb oxide in chlorine atmosphere decreases the temperature at which phase γ-Nb2O5 appears and at 1173 K the stable monoclinic phase α-Nb2O5 is obtained. Air calcination for 5 hours at temperatures between 973 and 1273 K of different amorphous Nb2O5·nH2O - Ta2O5·nH2O mixtures does not lead to solid solution of these oxides. Thermal treatment in chlorine atmosphere of amorphous Nb and Ta oxides leads to the formation of Nb2O5 and Ta2O5 orthorhombic solution in one hour at 973 K and in 24 hours at 1223 K, when starting from crystalline oxides. The effect of chlorine is due to the dissolution-recrystallization of the metallic chlorides and the oxygen formed, when the system evolves to chemical equilibrium between solid phases and gaseous chlorine.
机译:本文通过X射线衍射(XRD),扫描电子显微镜(SEM)和能量色散X射线光谱(EDXS)研究了非晶态水合Nb氧化物以及非晶态和结晶态Nb和Ta的混合物的结构变化在空气和氯气气氛中进行热处理的氧化物。空气中非晶Nb2 O5 ·nH2 的加热会根据工作温度导致不同的晶相。 Nb2 O5 的六方相在773 K下获得,单斜晶相β-Nb2 O5 的在1173 K下获得。在氯中对非晶Nb氧化物进行热处理大气降低了相γ-Nb2 O5 出现的温度,在1173 K处获得了稳定的单斜晶相α-Nb2 O5 。不同形态的Nb2 O5 ·nH2 O-Ta2 O5 ·nH2 O在973和1273 K之间的空气中煅烧5小时混合物不会导致这些氧化物的固溶体。在氯气氛中对非晶态Nb和Ta氧化物进行热处理会导致Nb2 O5 和Ta2 O5 正交晶溶液在1小时内在973 K下和在24小时内在24小时内形成。从结晶氧化物开始时为1223K。氯的影响是由于金属氯化物的溶解-重结晶和形成的氧气,当系统发展成固相和气态氯之间的化学平衡时。

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  • 来源
    《Journal of Materials Science》 |2001年第13期|3299-3311|共13页
  • 作者单位

    Instituto de Investigaciones en Tecnología Química (Universidad Nacional de San Luis-CONICET);

    Instituto de Investigaciones en Tecnología Química (Universidad Nacional de San Luis-CONICET);

    Argentine Atomic Energy Commission San Carlos de Bariloche;

    Argentine Atomic Energy Commission-CONICET San Carlos de Bariloche;

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