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手性膦氮杂环卡宾化合物:1,3-苯并氮杂膦环戊烯锂的 N-和 P-磷酰化反应。

Ambident PCN heterocycles: N- and P-phosphanylation of lithium 1,3-benzazaphospholides.

机构信息

Institut für Biochemie-Anorganische Chemie, Ernst-Moritz-Arndt-Universität Greifswald, Felix-Hausdorff-Strasse 4, 17487 Greifswald, Germany.

出版信息

Chemistry. 2009 Nov 16;15(45):12263-72. doi: 10.1002/chem.200901753.

Abstract

Synthetic and structural aspects of the phosphanylation of 1,3-benzazaphospholides 1(Li), ambident benzofused azaphosphacyclopentadienides, are presented. The unusual properties of phospholyl-1,3,2-diazaphospholes inspired us to study the coupling of 1(Li) with chlorodiazaphospholene 2, which led to the N-substituted product 3. Reaction of 1(Li) with chlorodiphenyl- and chlorodicyclohexylphosphane likewise gave N-phosphanylbenzazaphospholes 4 and 5, whereas with the more bulky di-tert-butyl- and di-1-adamantylchlorophosphanes, the diphosphanes 6 and 7 are obtained; in the case of 7 they are isolated as a dimeric LiCl(THF) adduct. Structural information was provided by single-crystal X-ray diffraction and solution NMR spectroscopy experiments. 2D exchange spectroscopy confirmed the existence of two rotamers of the aminophosphane 5 at room temperature; variable-temperature NMR spectroscopy studies of 6 revealed two dynamic processes, low-temperature inversion at ring phosphorus (DeltaH( not equal)=22 kJ mol(-1), DeltaS( not equal)=2 J K(-1) mol(-1)) and very low-temperature rotation of the tBu(2)P group. Quantum chemical studies give evidence that 2-unsubstituted benzazaphospholides prefer N-phosphanylation, even with bulky chlorophosphanes, and that substituents at the 2-position of the heterocycle are crucial for the occurrence of P-N rotamers and for switching to alternative P-substitution, beyond a threshold steric bulk, by both P- and 2-position substituents.

摘要

合成和结构方面的膦化 1,3-苯并氮杂膦环戊二烯 1(Li),ambident 苯并稠合氮杂环戊二烯,提出。膦基-1,3,2-二氮杂磷杂环戊二烯的不寻常性质启发我们研究 1(Li)与氯代二氮杂磷杂环戊烯 2 的偶联,得到 N-取代产物 3。1(Li)与氯代二苯基-和氯代二环己基膦反应同样得到 N-膦基苯并氮杂膦 4 和 5,而与更大体积的二叔丁基和二 1-金刚烷基氯膦反应,则得到二膦 6 和 7;在 7 的情况下,它们作为二聚体 LiCl(THF)加合物被分离出来。结构信息由单晶 X 射线衍射和溶液 NMR 光谱实验提供。2D 交换光谱证实了室温下氨基膦 5 存在两种旋转异构体;6 的变温 NMR 光谱研究揭示了两个动态过程,低温下磷环反转(DeltaH( not equal)=22 kJ mol(-1),DeltaS( not equal)=2 J K(-1) mol(-1))和叔丁基(2)P 基团的极低温度旋转。量子化学研究表明,2-未取代的苯并氮杂膦环更喜欢 N-膦化,即使使用大体积的氯膦,并且杂环上 2 位的取代基对于 P-N 旋转异构体的存在以及对于通过 P-和 2-位取代基切换到替代 P 取代基至关重要,超过了阈值的空间位阻。

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