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首页> 外文期刊>Solid state ionics >Study of Raman peak shift under applied isostatic pressure in rare-earth-doped ceria for evaluation of quantitative stress conditions in SOFCs
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Study of Raman peak shift under applied isostatic pressure in rare-earth-doped ceria for evaluation of quantitative stress conditions in SOFCs

机译:研究稀土掺杂二氧化铈在施加等静压下的拉曼峰位移,以评估SOFC中的定量应力条件

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摘要

We studied the relation between the Raman peak shift of the ceria F _(2g) peak and isostatic pressure in rare-earth-doped ceria, which is used as interlayer in anode-supported SOFCs, to evaluate the stress in operational anode-supported SOFCs. First, 10 and 20 mol% Sm- and Gd-doped ceria, and pure ceria were isostatically compressed up to 10 GPa in a diamond anvil cell and the Raman spectra were measured at each pressure. Based on the results and reported elastic properties, the relation was retrieved for rare-earth-doped ceria under anisotropic stress. Although rare-earth-doped ceria showed different behavior than pure ceria, the difference due to the dopant and its concentration was small. The obtained ratio between anisotropic pressure and Raman peak shift in rare-earth-doped ceria was 0.441 GPa/cm ~(- 1), and this value indicates that a change of 1 GPa in anisotropic stress will shift the Raman peak by approximately 2.3 cm ~(- 1). Hence, a Raman system, which can measure the Raman peak shift with an accuracy of 0.1 cm ~(- 1), can recognize differences in stress conditions in the interlayer to an accuracy of approximately 40-50 MPa.
机译:我们研究了二氧化铈F _(2g)峰的拉曼峰位移与稀土掺杂二氧化铈中等静压之间的关系,稀土掺杂二氧化铈用作阳极支撑的SOFC中的中间层,以评估工作阳极支撑的SOFC中的应力。首先,在金刚石砧室中将10和20 mol%的Sm和Gd掺杂的二氧化铈以及纯二氧化铈等静压至10 GPa,并在每个压力下测量拉曼光谱。根据结果​​和报告的弹性,可以得出各向异性应力下稀土掺杂二氧化铈的关系。尽管稀土掺杂的二氧化铈表现出与纯二氧化铈不同的行为,但是由于掺杂剂及其浓度引起的差异很小。稀土掺杂二氧化铈中各向异性压力与拉曼峰位移之间的比率为0.441 GPa / cm〜(-1),该值表明各向异性应力变化1 GPa会使拉曼峰位移约2.3 cm 〜(-1)。因此,可以以0.1cm〜(-1)的精度测量拉曼峰位移的拉曼系统可以以约40〜50MPa的精度识别夹层中的应力条件的差异。

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