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Ionic Transport Properties in Nanocrystalline Ce0.8A0.2O2-δ (with A = Eu Gd Dy and Ho) Materials

机译:纳米晶Ce0.8A0.2O2-δ(A = EuGdDy和Ho)材料中的离子输运性质

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摘要

The ionic transport properties of nanocrystalline 20 mol% Eu, Gd, Dy, and Ho doped cerias, with average grain size of around 14 nm were studied by correlating electrical, dielectric properties, and various dynamic parameters. Gd-doped nanocrystalline ceria shows higher value of conductivity (i.e., 1.8 × 10−4 S cm−1 at 550°C) and a lower value of association energy of oxygen vacancies with trivalent dopants Gd3+ (i.e., 0.1 eV), compared to others. Mainly the lattice parameters and dielectric constants (ε∞) are found to control the association energy of oxygen vacancies in these nanomaterials, which in turn resulted in the presence of grain and grain boundary conductivity in Gd- and Eu-doped cerias and only significant grain interior conductivity in Dy- and Ho-doped cerias.
机译:通过关联电,介电性能和各种动态参数,研究了平均晶粒尺寸约为14 nm的20 mol%Eu,Gd,Dy和Ho掺杂的二氧化铈纳米晶体的离子传输性能。掺Gd的纳米晶二氧化铈显示出较高的电导率值(即在550°C下为1.8×10 −4 S cm −1 )和较低的氧缔合能值与其他相比,具有三价掺杂剂Gd 3 + 的空位(即0.1 eV)。主要是发现晶格参数和介电常数(ε∞)控制这些纳米材料中氧空位的缔合能,这反过来导致在掺Gd和Eu的二氧化铈中存在晶粒和晶界电导率,并且仅存在大量晶粒Dy和Ho掺杂的二氧化铈的内部电导率。

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