...
首页> 外文期刊>The American mineralogist >Chemical bonding and electronic structures of the Al2SiO5 polymorphs, andalusite, sillimanite, and kyanite: X-ray photoelectron- and electron energy loss spectroscopy studies
【24h】

Chemical bonding and electronic structures of the Al2SiO5 polymorphs, andalusite, sillimanite, and kyanite: X-ray photoelectron- and electron energy loss spectroscopy studies

机译:Al2SiO5多晶型物,红柱石,硅线石和蓝晶石的化学键合和电子结构:X射线光电子和电子能量损失谱研究

获取原文
获取原文并翻译 | 示例
           

摘要

We have undertaken a detailed analysis of the X-ray photoelectron spectra obtained from the three polymorphs of Al2SiO5; andalusite, sillimanite, and kyanite. Comparison of the spectra was made based on the chemical bonding and structural differences in the Al- and Si-coordination within each polymorph. The spectra for Si(2p) for all three polymorphs are nearly identical, consistent with the fact that all the Si atoms are in 4-fold (tetrahedral) coordination, whereas the binding energies, peak shapes, and peak widths for Al(2p) vary depending on the type of polymorph. The upper-valence band for all three polymorphs is characterized by four main features derived from O(2p), Al(3s), Al(2p), Si(3s), and Si(3p), and the differences in their contributions are observed. The density of state of the Al2SiO5 polymorphs is relatively featureless compared to those observed from alpha-SiO2 and alpha-Al2O3, suggesting that the orbital overlaps span a greater range in energy . The observed band gap energy for Al2SiO5 (sillimanite) was similar to 9.1 eV, a value in between those for alpha-SiO2 (similar to 8.6eV) and alpha-Al2O3 (similar to 9.6eV). The conduction band feature of Al2SiO5 was experimentally compared to those of alpha-SiO2 and alpha-Al2O3, and shown that it is indeed intermediate between the alpha-SiO2 and alpha-Al2O3 phases.
机译:我们对由Al2SiO5的三种多晶型物获得的X射线光电子能谱进行了详细分析。红柱石,硅线石和蓝晶石。根据每个多晶型物内Al和Si配位的化学键和结构差异对光谱进行比较。所有三个多晶型物的Si(2p)光谱几乎相同,这与所有Si原子均处于4倍(四面体)配位形式,而Al(2p)的结合能,峰形和峰宽这一事实相一致根据多晶型物的类型而变化。这三个多态性的最高价带的特征是从O(2p),Al(3s),Al(2p),Si(3s)和Si(3p)得出的四个主要特征,它们的贡献是观测到的。与从α-SiO2和α-Al2O3观察到的状态相比,Al2SiO5多晶型物的状态密度相对没有特征,这表明轨道重叠的能量范围更大。观察到的Al2SiO5(硅线石)的带隙能量接近9.1 eV,介于α-SiO2(类似于8.6eV)和α-Al2O3(类似于9.6eV)之间。实验中将Al2SiO5的导带特征与α-SiO2和α-Al2O3的导带特征进行了比较,结果表明它确实位于α-SiO2和α-Al2O3相之间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号