Terban Maxwell W, Shi Chenyang, Silbernagel Rita, Clearfield Abraham, Billinge Simon J L
Department of Applied Physics and Applied Mathematics, Columbia University , New York, New York 10027, United States.
Department of Chemistry, Texas A&M University , College Station, Texas 77843, United States.
Inorg Chem. 2017 Aug 7;56(15):8837-8846. doi: 10.1021/acs.inorgchem.7b00666. Epub 2017 Jul 13.
The structures of Zr(IV) phosphonate-phosphate based, unconventional metal organic framework materials have been determined using atomic pair distribution function analysis of high energy, X-ray total scattering diffraction data. They are found to form as nanocrystalline layers of Zr phosphate, similar to the bulk, but with a high degree of interlayer disorder and intermediate intralayer order extending around 5 nm. These materials are of interest for their high selectivity for 3+ lanthanide ions. To investigate the mechanism of the selectivity, we utilize difference pair distribution function analysis to extract the local structural environment of Tb ions loaded into the framework. The ions are found to sit between the layers in a manner resembling the local environment of Tb in Scheelite-type terbium phosphate. By mapping this local structure onto that of the refined structure for zirconium-phenyl-phosphonate, we show how dangling oxygens from the phosphate groups, acting like nose hairs, are able to reorient to provide a friendly intercalation environment for the Tb ions.
基于锆(IV)膦酸盐 - 磷酸盐的非常规金属有机骨架材料的结构,已通过对高能X射线全散射衍射数据进行原子对分布函数分析来确定。发现它们形成为磷酸锆的纳米晶层,类似于块状材料,但具有高度的层间无序和延伸约5纳米的中等程度的层内有序。这些材料因其对3 +镧系离子具有高选择性而备受关注。为了研究选择性机制,我们利用差分对分布函数分析来提取负载到骨架中的铽离子的局部结构环境。发现这些离子以类似于白钨矿型磷酸铽中铽的局部环境的方式位于层间。通过将这种局部结构映射到锆 - 苯基 - 膦酸盐的精制结构上,我们展示了来自磷酸基团的悬空氧如何像鼻毛一样重新定向,为铽离子提供一个友好的插层环境。