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Strontium doping in mullite-type bismuth aluminate: A vacancy investigation using neutrons, photons and electrons

机译:莫来石型铝酸铋中的锶掺杂:利用中子,光子和电子的空位研究

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摘要

We report on strontium doped dibismuth-nonaoxoaluminate(III) produced at 1023 K. Partial substitution of bismuth by strontium in the structure yields oxygen vacancies for charge balance. Introducing oxygen vacancies rearranged the associated Al2O7 double-tetrahedra forming “Al3O10” tri-clusters which were identified by multi-quantum 27Al MAS NMR. Both STEM-EDX and XPS showed homogeneous distribution of strontium in the bulk and on the surface, respectively. Moreover, XPS confirms the valence state of bismuth after doping. The orientations of bismuth 6s2 lone electron pairs were calculated using DFT methods. The amount of strontium in the crystal structure was further confirmed from the decomposition product SrAl12O19 formed during the temperature-dependent X-ray powder diffraction. The structural proof was carried out by refining the structure of (Bi0.94Sr0.06)2Al4O8.94 from powder neutron and X-ray diffraction data. Rietveld refinements clearly showed the under occupation of one oxygen site and the shift of two aluminum atoms from the double-tetrahedra to two tri-cluster sites.
机译:我们报告了在1023 K上产生的掺锶的Bis-nonaoxoaluminate(III)。结构中锶部分取代铋将产生氧空位,从而实现电荷平衡。引入氧空位重排了相关的Al2O7双四面体,形成了“ Al3O10”三簇,这些簇通过多量子27Al MAS NMR鉴定。 STEM-EDX和XPS均显示锶在本体和表面上的均匀分布。此外,XPS证实了掺杂后的铋价态。使用DFT方法计算了铋6s2单电子对的取向。由在与温度相关的X射线粉末衍射过程中形成的分解产物SrAl12O19进一步证实了晶体结构中的锶含量。通过从粉末中子和X射线衍射数据中细化(Bi0.94Sr0.06)2Al4O8.94的结构来进行结构验证。 Rietveld的改进清楚地表明一个氧位的占用不足和两个铝原子从双四面体向两个三簇位的转移。

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