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The Interpretation of the Short Range Disorder in the Fluorene-TCNE Crystal Structure

机译:芴-TCNE晶体结构中短程无序的解释

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The interpretation of the short-range static and/or dynamic disorder in a crystal structure from X-ray data is often a rather complex problem. Recently, we synthesized and characterized three co-crystalline complexes between fluorene, showing C2v symmetry, and three electron withdrawing D2h compounds, employing FTIR and Raman spectroscopy and single crystal X-ray diffraction techniques. The crystal structures of the complexes of fluorene with the three different electron withdrawing molecules are disordered in the solid state and only approximate structures were obtained by refinement of the single crystal data. Indeed, the fluorene moiety presents a very irregular geometry, showing for example C-C bonds ranging from 1.25Å to 1.75Å. Graphical inspection of the solved crystal structures indicates that the fluorene molecules in these co-crystalline complexes can assume two possible positions, both with 50% population. A two-step procedure to improve the disordered models is described. At first, the two possible ordered structures, with the fluorene molecule in only one of the two populated positions, are "separated" by molecular graphic techniques and then their geometry is fully optimized employing the periodic ab initio “CRYSTAL” code to obtain a chemically sensible model with reasonable distances and angles. The main aim of this communication is to demonstrate that ordered models can be obtained, starting from a disordered crystal structure, focusing our attention on the fluorene-TCNE molecular complex.
机译:从X射线数据解释晶体结构中的短程静态和/或动态无序通常是一个相当复杂的问题。最近,我们合成并表征了芴之间的三个共晶配合物,表现出 C 2v 对称性和三个吸电子的 D 2h <化合物,采用FTIR和拉曼光谱法以及单晶X射线衍射技术。芴与三种不同的吸电子分子的配合物的晶体结构在固态中是无序的,并且通过细化单晶数据仅获得近似的结构。实际上,芴部分具有非常不规则的几何形状,例如显示出C-C键范围为1.25Å至1.75Å。对所解决的晶体结构的图形检查表明,这些共晶配合物中的芴分子可以占据两个可能的位置,且两个位置均具有50%的人口。描述了改进无序模型的两步过程。首先,通过分子图解技术“分离”两个可能的有序结构,其中芴分子仅处于两个填充的位置之一,然后使用周期性的 ab initio 完全优化其几何形状。 CRYSTAL”代码可获取具有合理距离和角度的化学敏感模型。这种交流的主要目的是证明可以从无序的晶体结构开始获得有序模型,并将我们的注意力集中在芴-TCNE分子复合物上。

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