Chemical Sciences and Engineering Division, Advanced Photon Source, Argonne National Laboratory, Argonne, Illinois 60439, USA.
Inorg Chem. 2011 Jul 4;50(13):5855-7. doi: 10.1021/ic2004326. Epub 2011 May 31.
X-ray pair distribution function (PDF) methods and first-principles calculations have been combined to probe the structure of electrochemically lithiated TiO(2) Brookite. Traditional powder diffraction studies suggest that Brookite amorphizes upon lithium insertion, with the Bragg reflections disappearing. However, PDF analysis indicates that the TiO(2) framework connectivity is maintained throughout lithium intercalation, with expansions along the a and b axes. The Li(+) ions within the framework are poorly observed in the X-ray PDF, which is dominated by contributions from the more strongly scattering Ti and O atoms. First-principles calculations were used to identify energetically favorable Li(+) sites within the Brookite lattice and to develop a complete structural model of the lithiated material. This model replicates the local structure and decreased intermediate range order observed in the PDF data. The analysis suggests that local structural distortions of the TiO(2) lattice accommodate lithium in five-coordinate sites. This structural model is consistent with the observed electrochemical behavior.
X 射线对分布函数(PDF)方法和第一性原理计算相结合,研究了电化学嵌锂锐钛矿 TiO(2)的结构。传统的粉末衍射研究表明,锐钛矿在锂离子嵌入时会非晶化,布拉格反射消失。然而,PDF 分析表明,TiO(2) 骨架的连接性在整个锂嵌入过程中得以保持,沿 a 和 b 轴发生膨胀。在 X 射线 PDF 中,框架内的 Li(+)离子观察不到,PDF 主要由散射更强的 Ti 和 O 原子的贡献主导。第一性原理计算用于确定锐钛矿晶格中能量有利的 Li(+)位点,并为嵌锂材料建立完整的结构模型。该模型复制了 PDF 数据中观察到的局部结构和中间范围有序度的降低。分析表明,TiO(2)晶格的局部结构畸变以五配位的方式容纳锂离子。这种结构模型与观察到的电化学行为一致。