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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Polymorphism in P,P-[3]ferrocenophanes: insights from an NMR crystallographic approach?
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Polymorphism in P,P-[3]ferrocenophanes: insights from an NMR crystallographic approach?

机译:P,P- [3]二茂铁烷中的多态性:从NMR晶体学方法的见解?

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摘要

Polymorphism phenomena in P,P-[3]ferrocenophanes were studied by ~(31)P and ~(13)C solid-state NMR spectroscopy and suitable DFT calculations. “No-bond” indirect ~(31)P?~(31)P spin–spin coupling constants serve as a rather sensitive tool for the characterization of such systems, particularly since this NMR observable strongly depends on intermolecular P?P distances and mutual orientations of the phosphorus lone pairs. Indeed, the structure of a previously unknown pseudo-polymorphism of a P,P-[3]ferrocenophane was determined via the emerging tool kit of “NMR crystallography”, where structural inputs and constraints determined by modern solid-state NMR techniques, aided by DFT calculations, are used for faster and more reliable structure solution or refinement of X-ray powder diffraction patterns. Based on this approach it is demonstrated that the observed pseudo polymorphism is related to reversible incorporation of dichloromethane in the crystal structures.
机译:通过〜(31)P和〜(13)C固态NMR光谱学和适当的DFT计算研究了P,P- [3]二茂铁蛋白中的多态现象。 “无键”间接〜(31)P?〜(31)P自旋-自旋耦合常数是表征此类系统的相当灵敏的工具,尤其是因为可观察到的NMR强烈依赖于分子间的P?P距离和相互磷孤对的取向。确实,P,P- [3]二茂铁oph烷的先前未知的假多态的结构是通过新兴的“ NMR晶体学”工具包确定的,其中通过现代固态NMR技术确定结构输入和约束,并借助DFT计算可用于更快,更可靠的结构解决方案或X射线粉末衍射图的细化。基于这种方法,证明观察到的假多态性与二氯甲烷在晶体结构中的可逆结合有关。

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