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钼(三甲基膦)六配合物对杂环氮化合物的反应活性:与加氢脱氮相关的转化反应

The reactivity of Mo(PMe3)(6) towards heterocyclic nitrogen compounds: transformations relevant to hydrodenitrogenation.

作者信息

Zhu Guang, Tanski Joseph M, Churchill David G, Janak Kevin E, Parkin Gerard

机构信息

Department of Chemistry, Columbia University, New York, New York 10027, USA.

出版信息

J Am Chem Soc. 2002 Nov 20;124(46):13658-9. doi: 10.1021/ja028512w.

Abstract

The reactions of Mo(PMe3)6 towards a variety of five- and six-membered heterocyclic nitrogen compounds (namely, pyrrole, indole, carbazole, pyridine, quinoline, and acridine) have been studied to provide structural models for the coordination of these heterocycles to the molybdenum centers of hydrodenitrogenation catalysts. Pyrrole reacts with Mo(PMe3)6 to yield the eta5-pyrrolyl derivative (eta5-pyr)Mo(PMe3)3H, while indole gives sequentially (eta1-indolyl)Mo(PMe3)4H, (eta5-indolyl)Mo(PMe3)3H, and (eta6-indolyl)Mo(PMe3)3H, with the latter representing the first example of a structurally characterized complex with an eta6-indolyl ligand. Likewise, carbazole reacts with Mo(PMe3)6 to give (eta6-carbazolyl)Mo(PMe3)3H with an eta6-carbazolyl ligand. The reactions of Mo(PMe3)6 with six-membered heterocyclic nitrogen compounds display interesting differences in the nature of the products. Thus, Mo(PMe3)6 reacts with pyridine to give an eta2-pyridyl derivative [eta2-(C5H4N)]Mo(PMe3)4H as a result of alpha-C-H bond cleavage, whereas quinoline and acridine give products of the type (eta6-ArH)Mo(PMe3)3 in which both ligands coordinate in an eta6-manner. For the reaction with quinoline, products with both carbocyclic and heterocyclic coordination modes are observed, namely [eta6-(C6)-quinoline]Mo(PMe3)3 and [eta6-(C5N)-quinoline]Mo(PMe3)3, whereas only carbocyclic coordination is observed for acridine.

摘要

已研究了Mo(PMe₃)₆与多种五元及六元杂环氮化合物(即吡咯、吲哚、咔唑、吡啶、喹啉和吖啶)的反应,以提供这些杂环与加氢脱氮催化剂钼中心配位的结构模型。吡咯与Mo(PMe₃)₆反应生成η⁵-吡咯基衍生物(η⁵-pyr)Mo(PMe₃)₃H,而吲哚则依次生成(η¹-吲哚基)Mo(PMe₃)₄H、(η⁵-吲哚基)Mo(PMe₃)₃H和(η⁶-吲哚基)Mo(PMe₃)₃H,后者是具有η⁶-吲哚基配体的结构表征配合物的首个实例。同样,咔唑与Mo(PMe₃)₆反应生成具有η⁶-咔唑基配体的(η⁶-咔唑基)Mo(PMe₃)₃H。Mo(PMe₃)₆与六元杂环氮化合物的反应在产物性质上表现出有趣的差异。因此,Mo(PMe₃)₆与吡啶反应,由于α-C-H键断裂生成η²-吡啶基衍生物[η²-(C₅H₄N)]Mo(PMe₃)₄H,而喹啉和吖啶则生成(η⁶-ArH)Mo(PMe₃)₃类型的产物,其中两个配体均以η⁶方式配位。对于与喹啉的反应,观察到了具有碳环和杂环配位模式的产物,即[η⁶-(C₆)-喹啉]Mo(PMe₃)₃和[η⁶-(C₅N)-喹啉]Mo(PMe₃)₃,而对于吖啶仅观察到碳环配位。

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