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Probing the Local Site Disorder and Distortion in Pyrochlore High-Entropy Oxides

机译:催化宾夕法差探测陶瓷高熵氧化物的局部障碍和畸变

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摘要

High-entropy oxides (HEOs) have attracted great interest in diverse fields because of their inherent opportunities to tailor and combine materials functionalities. The control of local order/disorder in the class is by extension a grand challenge toward realizing their vast potential. Here we report the first examples of pyrochlore HEOs with five M-site cations, for Nd_2M_2O_7, in which the local structure has been investigated by neutron diffraction and pair distribution function (PDF) analysis. he average structure of the pyrochlores is found to be orthorhombic Imma, in agreement with radius-ratio rules governing the structural archetype. The computed PDFs from density functional theory relaxed special quasirandom structure models are compared with real space PDFs in this work to evaluate M-site order/disorder. Reverse Monte Carlo combined with ab initio molecular dynamics and Metropolis Monte Carlo simulations demonstrates that Nd_2(Ta_(0.2)Sc_(0.2)Sn_(0.2)Hf_(0.2)Zr_(0.2))_2O_7 is synthesized with its M-site local to nanoscale order highly randomized/ disordered, while Nd_2(Ta_(0.2)Sc_(0.2)Sn_(0.2)Hf_(0.2)Zr_(0.2))_2O_(7+x) exhibits a strong distortion of the TiO_6 octahedron and small degree of Ti chemical short-range order (SRO) on the subnanometer scale. Calculations suggest that this may be intrinsic, energetically favored SRO rather than due to sample processing. These results offer an important demonstration that the engineered variation of participating ions in HEOs, even among those with very similar radii, provides richly diverse opportunities to control local order/disorder motifs-and therefore materials properties for future designs. This work also hints at the exquisite level of detail that may be needed in computational and experimental data analysis to guide structure-property tuning in the emerging HEO materials class.
机译:由于其固有的机会来定制和结合材料功能,高熵氧化物(HEOS)引起了各种领域的极大兴趣。在班上的当地订单/疾病的控制是通过延长一个巨大挑战,实现了他们的巨大潜力。在这里,我们报道了具有五个M位阳离子的柏油路HEO的第一个示例,用于ND_2M_2O_7,其中通过中子衍射和对分布函数(PDF)分析研究了本地结构。他发现汉族的平均结构是正交的IMMA,同意针对结构原型的半径比例。来自密度函数理论的计算的PDF缓解特殊的Quasirandom结构模型与此工作中的真实空间PDF进行比较,以评估M-位点命令/无序。反向蒙特卡罗与AB Initio分子动力学和Metropolis Monte Carlo模拟表明ND_2(TA_(0.2)SC_(0.2)SN_(0.2)HF_(0.2)HF_(0.2)ZR_(0.2))_ 2O_7是用其M-Site inapale合成的纳米级顺序高度随机/无序,而ND_2(TA_(0.2)SC_(0.2)SN_(0.2)HF_(0.2)ZR_(0.2))_ 2O_(7 + X)表现出TIO_6八面体的强烈扭曲和小程度的TI化学品亚尺度上的短距离顺序(SRO)。计算表明,这可能是内在的,能量充满活力的,而不是由于样品处理。这些结果提供了一个重要的示范,即赫斯中参与离子的参与的变化,即使是具有非常相似的半径,也为控制局部订单/疾病图案进行了丰富的多样化机会 - 以及未来设计的材料特性。这项工作还在计算和实验数据分析中可能需要的精致细节水平,以指导新兴HEO材料类中的结构性质调整。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第11期|4193-4204|共12页
  • 作者单位

    Neutron Scattering Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 United States;

    Chemical Sciences Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 United States;

    Center for Nanophase Materials Sciences Oak Ridge National Laboratory Oak Ridge Tennessee 37831 United States;

    Materials Sciences and Technology Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 United States;

    Materials Sciences and Technology Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 United States;

    Neutron Scattering Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 United States;

    Institute of Applied Physics and Computational Mathematics Beijing 100088 China CAEP Software Center for High Performance Numerical Simulation Beijing 100088 China;

    Neutron Scattering Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 United States Department of Materials Science and Engineering University of Tennessee Knoxville Tennessee 37996 United States;

  • 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);美国《化学文摘》(CA);
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  • 正文语种 eng
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