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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Raman spectroscopy studies of apatite-type germanate oxide ion conductors: correlation with interstitial oxide ion location and conduction
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Raman spectroscopy studies of apatite-type germanate oxide ion conductors: correlation with interstitial oxide ion location and conduction

机译:磷灰石型锗酸根氧化物离子导体的拉曼光谱研究:与间质性氧化物离子位置和传导的相关性

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摘要

A Raman spectroscopy study of the apatite series La_(8+x)Ba_(2-x)(GeO4)6O_(2+x/2) is presented. The results show the presence of a new Raman band appearing at ~645 cm~(-1), whose intensity increases with increasing interstitial oxide ion content. This new band is also observed in samples containing cation vacancies, consistent with previous suggestions that the presence of cation vacancies enhances Frenkel-type defect formation. The fact that the new band is in the stretching region of the spectra, rather than the bending region as observed for the silicate analogues, is consistent with the interstitial oxide ions being more closely associated with the Ge. This band is attributed to the presence of interstitial oxide ions leading to the formation of five coordinate Ge, in agreement with recent neutron diffraction and modelling studies. From the observation of a reduction in the intensity of this band with increasing temperature, it is suggested that the activation energy for conduction in these apatite germanates is a combination of the energy to "free" the interstitial oxide ions from the five coordinate Ge, and the energy for their subsequent migration. The former process is ascribed to the observed reduction in Raman intensity with an activation energy of 0.32 ± 0.06 eV. Thus the higher activation energy for the germanate apatites over the related silicates can be ascribed to the defect trapping associated with the closer association of the interstitial oxide ion with the tetrahedra in the former.
机译:提出了磷灰石系列La_(8 + x)Ba_(2-x)(GeO4)6O_(2 + x / 2)的拉曼光谱研究。结果表明,在〜645 cm〜(-1)处出现了一条新的拉曼能带,其强度随间隙氧化物离子含量的增加而增加。在含有阳离子空位的样品中也观察到了这个新的谱带,这与以前的建议一致,即阳离子空位的存在会增强弗伦克尔型缺陷的形成。新的带处于光谱的拉伸区域,而不是如硅酸盐类似物所观察到的弯曲区域,这一事实与间隙氧化物离子与Ge更紧密地相一致。与最近的中子衍射和模型研究一致,该能带归因于间隙氧化物离子的存在,导致形成五个配位Ge。从观察到该带的强度随温度升高而降低,表明这些磷灰石锗酸盐中用于传导的活化能是能量的组合,以从五个坐标Ge中“释放”间隙氧化物离子,并且他们随后迁移的能量。前一个过程归因于拉曼强度的降低,其活化能为0.32±0.06 eV。因此,锗酸盐磷灰石在相关硅酸盐上的较高活化能可归因于与前者中间隙氧化物离子与四面体的紧密缔合有关的缺陷捕获。

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