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High-pressure behavior of heteroepitaxial core-shell particles made of Prussian blue analogs

机译:普鲁士蓝色类似物制成的异质轴核心颗粒的高压行为

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摘要

We report the compressibility of two Prussian blue analogs (PBAs) under hydrostatic pressure, one with small and one with a relatively large cubic unit cell among PBAs, and investigate the modification of their elastic properties when the two lattices are coupled within a heteroepitaxial core-shell structure. Bulk modulus (K_0) values are derived from x-ray powder diffraction experiments using a diamond anvil cell with silicone oil as a pressure-transmitting medium. The pressure-volume curves fitted to Murnaghan equations of states show that K_0 inversely scales with the crystal packing for the rubidium cobalt hexacyanoferrate and rubidium nickel hexacyanochromate samples (K_0~29 GPa for Co-Fe PBA,a_0=9.95 Å and~20 GPa for Ni-Cr PBA,a_0 = 10.48 Å with a_0 being the lattice constant at ambient pressure). The two single-phase samples undergo a cubic-to-rhombohedral phase transition above ~0.8 GPa, which correlates fairly well with the build-up of nonhydrostatic pressure contributions in the cell. Within the core-shell structure, the volume change observed for the core scales with that of the shell because of the configuration close to the case of a solid pressure-transmitting medium. The Ni-Cr PBA shell layer exhibits an increased rhombohedral distortion with respect to the single-phase reference possibly associated with shearing at the core-shell interface. Its bulk modulus is not significantly modified with respect to that of the single-phase sample despite the presence of defects associated with the growth mode, whereas the P-V curve of the core suggests a stiffening of the Co-Fe PBA lattice.
机译:我们在静水压力下报告了两个普鲁士蓝色类似物(PBA)的可压缩性,其中一个小和一个具有相对大的立方体单元电池的PBA,并且当两个晶格耦合在异质轴上时,调查它们的弹性特性的修改壳结构。本体模量(K_0)值衍生自X射线粉末衍射实验,使用具有硅油作为压力传递介质的金刚石砧座。适配给各国Murnaghan方程的压力曲线表明,K_0与铷钴己酰甲酸甲酸酯和铷镍六氰铬酸酯样品的晶体包装成反比(CO-Fe PBA的K_0〜29GPa,A_0 = 9.95埃和约20GPa NI-CR PBA,A_0 =10.48Å,A_0是环境压力下的晶格常数)。两种单相样品经历高于〜0.8GPa的立方对菱体相转变,其在细胞中的非水压压力贡献的积聚方面相当好。在核心壳结构内,由于靠近固体压力传递介质的情况,因此具有壳体的核心尺度观察到的体积变化。 Ni-Cr PBA壳层相对于可能与芯壳界面处的剪切有关的单相参考,菱形畸形增加。尽管存在与生长模式相关的缺陷存在,但是其体积模量没有显着修改单相样品,而核心的P-V曲线表明CO-FE PBA格子的加强。

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  • 来源
    《Journal of Applied Physics》 |2021年第23期|235106.1-235106.10|共10页
  • 作者单位

    Physique de la Matiere Condensee UMR 7643 Ecole polytechnique CNRS IP Paris 91128 Palaiseau France Univ. Grenoble Alpes CNRS Grenoble INP Institut NEEL BP 166 38042 Grenoble France;

    Division of Physics Institute of Liberal Education Nihon University School of Medicine Itabashi-Ku Tokyo 173-8610 Japan;

    Department of Chemistry University of Florida Gainesville Florida 32611-7200 USA;

    Department of Chemistry University of Florida Gainesville Florida 32611-7200 USA;

    Physique de la Matiere Condensee UMR 7643 Ecole polytechnique CNRS IP Paris 91128 Palaiseau France;

    Groupe d'Etudes de la Matiere Condensee UMR 8635 CNRS Universite de Versailles-Saint-Quentin 45 Avenue des Etats-Unis 78035 Versailles Cedex France;

    Synchrotron SOLEIL L'orme des Merisiers Saint Aubin BP 48 91192 Gif sur Yvette France;

  • 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);
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  • 正文语种 eng
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