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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Magnetization, M?ssbauer and isothermal dilatometric behavior of oxidized YBa(Co,Fe) _4O _(7+δ)
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Magnetization, M?ssbauer and isothermal dilatometric behavior of oxidized YBa(Co,Fe) _4O _(7+δ)

机译:氧化的YBa(Co,Fe)_4O _(7 +δ)的磁化,M?ssbauer和等温膨胀行为

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M?ssbauer spectroscopy and magnetization studies of YBaCo _(4-x)Fe _xO _(7+δ) (x = 0-0.8) oxidized at 0.21 and 100 atm O 2, indicate an increasing role of penta-coordinated Co ~(3+) states when the oxygen content approaches 8-8.5 atoms per formula unit. Strong magnetic correlations are observed in YBaCo _(4-x)Fe _xO _(8.5) from 2 K up to 55-70 K, whilst the average magnetic moment of Co ~(3+) is lower than that for δ ≤ 0.2, in correlation with the lower ~(57)Fe ~(3+) isomer shifts determined from M?ssbauer spectra. The hypothesis on dominant five-fold coordination of cobalt cations was validated by molecular dynamics modeling of YBaCo _4O _(8.5). The iron solubility limit in YBaCo _(4-x)Fe _xO _(7+δ) corresponds to approximately x ≈ 0.7. The oxygen intercalation processes in YBaCo _4O _(7+δ) at 470-700 K, analyzed by X-ray diffraction, thermogravimetry and controlled-atmosphere dilatometry, lead to unusual volume expansion opposing to the cobalt cation radius variations. This behavior is associated with increasing cobalt coordination numbers and with rising local distortions and disorder in the crystal lattice on oxidation, predicted by the computer simulations. When the oxygen partial pressure increases from 4 × 10 ~(-5) to 1 atm, the linear strain in YBaCo _4O _(7+δ) ceramics at 598 K is as high as 0.33%.
机译:YBaCo _(4-x)Fe _xO _(7 +δ)(x = 0-0.8)在0.2 atm和100 atm O 2氧化的Msssbauer光谱和磁化研究表明,五配位Co〜( 3+)表示每个公式单位的氧含量接近8-8.5个原子。在YBaCo _(4-x)Fe _xO _(8.5)中,从2 K到55-70 K,观察到强磁相关性,而Co〜(3+)的平均磁矩低于δ≤0.2的平均磁矩,与由Msssbauer光谱确定的较低的〜(57)Fe〜(3+)异构体位移相关。 YBaCo _4O _(8.5)的分子动力学模型验证了钴阳离子占主导地位的五倍配位的假说。 YBaCo _(4-x)Fe _xO _(7 +δ)中的铁溶解度极限对应于大约x≈0.7。通过X射线衍射,热重分析和受控大气膨胀法分析,在470-700 K下YBaCo _4O _(7 +δ)中的氧嵌入过程导致了与钴阳离子半径变化相反的异常体积膨胀。这种行为与计算机模拟预测的钴配位数增加以及氧化时晶格中局部畸变和无序增加有关。当氧分压从4×10〜(-5)增加到1 atm时,YBaCo _4O _(7 +δ)陶瓷在598 K时的线性应变高达0.33%。

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