正交晶系
锂(药物)
中子衍射
快离子导体
结构精修
材料科学
衍射仪
X射线晶体学
结晶学
粉末衍射
离子
晶体结构
衍射
分析化学(期刊)
化学
物理化学
电解质
物理
医学
有机化学
电极
光学
内分泌学
色谱法
作者
M. Catti,Angiolina Comotti,Silvia Di Blas,R.M. Ibberson
摘要
Phases with 0 < x ≤ 1.5 were synthesized within the system Li1+xFexTi2−x(PO4)3, of interest for applications as high Li+ mobility material. By powder X-ray diffractometry, three modifications were found to be stable for x ≤ 0.6 (Nasicon-type Rc), 0.6 < x < 1.1 (orthorhombic Pbca), and x ≥ 1.1 (orthorhombic Pbna). The compound Li1.5Fe0.5Ti1.5(PO4)3 was employed for a detailed structural investigation by high resolution powder neutron diffraction (HRPD time-of-flight diffractometer, ISIS spallation source, UK) at 298 and 673 K. Using Rietveld and Fourier difference techniques, lithium atoms were located and the two structures refined to wRp = 0.053 and 0.035, respectively. Lithium was found to be highly disordered, and distributed in similar amounts between the M1 and M2 cavities of the Nasicon framework, unlike what is usually observed in lithium Nasicon phases. A particularly large ion mobility should thus be expected. The configuration of Li sites within the M1 hollow is strongly affected on heating, so as to displace lithium towards the periphery of the cavity. The effects on the mobility pathways of Li+ ions are analyzed and discussed.
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