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首页> 外文期刊>Journal of Applied Physics >Experimental equation of state of 11 lanthanide nitrides (NdN to LuN) and pressure induced phase transitions in NdN, SmN, EuN, and GdN
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Experimental equation of state of 11 lanthanide nitrides (NdN to LuN) and pressure induced phase transitions in NdN, SmN, EuN, and GdN

机译:11个镧系元素氮化物(NDN至LUN)的实验方程和NDN,SMN,EUN和GDN中的压力诱导相转变

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摘要

Through an extensive data analysis of powder X-ray diffraction data obtained at pressures up to at least 78 GPa, we report the experimental equations of state for all lanthanide nitrides between NdN and LuN, excluding the radioactive Pm. By fitting the obtained unit cell volumes as a function of pressure with the third order Birch-Murnaghan equation of state, we find that the bulk modulus increases with an increasing lanthanide number from K_0 = 146(12) GPa for NdN to 182(7) GPa in EuN. Hereafter, the bulk modulus reaches a plateau for the rest of the series except for TmN which has a lower bulk modulus. We find that the first derivative of the bulk modulus is around 4 for all compounds except TbN, which displays a significantly different compression behavior. In addition, we find a B1 to B10 pressure-induced phase transition in NdN, SmN, EuN, and GdN at increasingly higher pressures. In fact, we observe that the onset pressure of the phase transition increases linearly with Ln atomic number. From TbN and onwards, we do not observe any sign of a Bl to BIO transition indicating that the transition pressure exceeds the studied pressure range. Therefore, we believe that, for the heavier lanthanides, the linear relationship between the onset pressure and the lanthanide number does not hold and even higher pressures are needed to observe the transition. This coherent study of the series of lanthanide nitrides offers a unique opportunity for benchmark studies of computational methods applied to compounds with 4f electrons.
机译:通过在高达至少78GPa的压力下获得的粉末X射线衍射数据的广泛数据分析,我们报告了NDN和LUN之间所有镧系元素氮化物的状态的实验方程,不包括放射性PM。通过将所获得的单元电池体积拟合作为具有第三阶Birch-Murnaghan方程的压力的函数,发现本体模量随来自K_0 = 146(12)GPA的增加的镧系元素,用于NDN至182(7) GPA在Eun。以下,除了具有较低的散装模量的TMN之外,散装模量达到了该系列的其余部分。我们发现,除了TBN之外的所有化合物,散装量模的第一个衍生物约为4,其显示出明显不同的压缩行为。此外,我们在NDN,SMN,EUN和GDN中发现B1至B10压力诱导的相变,越来越高的压力。事实上,我们观察到相变的发作压力随着LN原子数而线性增加。从TBN和向后,我们不观察到BL到生物过渡的任何迹象,表明过渡压力超过所研究的压力范围。因此,我们认为,对于较重的镧系元素,发病压力与镧系元素之间的线性关系不会保持,并且需要更高的压力来观察转变。该系列镧系金硝化物的这种相干性研究为应用于具有4F电子的化合物的计算方法的基准研究提供了独特的机会。

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  • 来源
    《Journal of Applied Physics》 |2020年第13期|135902.1-135902.8|共8页
  • 作者单位

    Department of Chemistry and iNANO Aarhus University Langelandsgade 140 8000 Aarhus C Denmark;

    Department of Chemistry and iNANO Aarhus University Langelandsgade 140 8000 Aarhus C Denmark;

    Department of Chemistry and iNANO Aarhus University Langelandsgade 140 8000 Aarhus C Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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