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[Rh(PONOP-Pr)(L)]阳离子(L = 环辛二烯、降冰片二烯、乙烯)的η-烯烃配合物。分子内烯烃辅助氢化作用及二氢配合物[Rh(PONOP-Pr)(η-H)]

η-Alkene Complexes of [Rh(PONOP-Pr)(L)] Cations (L = COD, NBD, Ethene). Intramolecular Alkene-Assisted Hydrogenation and Dihydrogen Complex [Rh(PONOP-Pr)(η-H)].

作者信息

Johnson Alice, Royle Cameron G, Brodie Claire N, Martínez-Martínez Antonio J, Duckett Simon B, Weller Andrew S

机构信息

Chemical Research Laboratories, Department of Chemistry, University of Oxford, Oxford OX1 3TA, U.K.

Department of Chemistry, University of York, York YO10 5DD, U.K.

出版信息

Inorg Chem. 2021 Sep 20;60(18):13903-13912. doi: 10.1021/acs.inorgchem.0c03687. Epub 2021 Feb 11.

Abstract

Rhodium-alkene complexes of the pincer ligand κ-CHN-2,6-(OPPr) (PONOP-Pr) have been prepared and structurally characterized: [Rh(PONOP-Pr)(η-alkene)][BAr] [alkene = cyclooctadiene (COD), norbornadiene (NBD), ethene; Ar = 3,5-(CF)CH]. Only one of these, alkene = COD, undergoes a reaction with H (1 bar), to form [Rh(PONOP-Pr)(η-COE)][BAr] (COE = cyclooctene), while the others show no significant reactivity. This COE complex does not undergo further hydrogenation. This difference in reactivity between COD and the other alkenes is proposed to be due to alkene-assisted reductive elimination in the COD complex, in which the η-bound diene can engage in bonding with its additional alkene unit. H/D exchange experiments on the ethene complex show that reductive elimination from a reversibly formed alkyl hydride intermediate is likely rate-limiting and with a high barrier. The proposed final product of alkene hydrogenation would be the dihydrogen complex [Rh(PONOP-Pr)(η-H)][BAr], which has been independently synthesized and undergoes exchange with free H on the NMR time scale, as well as with D to form free HD. When the H addition to [Rh(PONOP-Pr)(η-ethene)][BAr] is interrogated using H at higher pressure (3 bar), this produces the dihydrogen complex as a transient product, for which enhancements in the H NMR signal for the bound H ligand, as well as that for free H, are observed. This is a unique example of the partially negative line-shape effect, with the enhanced signals that are observed for the dihydrogen complex being explained by the exchange processes already noted.

摘要

制备并通过结构表征了钳形配体κ-CHN-2,6-(OPPr)(PONOP-Pr)的铑-烯烃配合物:[Rh(PONOP-Pr)(η-烯烃)][BAr] [烯烃 = 环辛二烯(COD)、降冰片二烯(NBD)、乙烯;Ar = 3,5-(CF)CH]。其中只有一种,即烯烃 = COD,会与H₂(1 bar)发生反应,生成[Rh(PONOP-Pr)(η-环辛烯)][BAr](COE = 环辛烯),而其他的则没有明显的反应活性。这种COE配合物不会进一步氢化。COD与其他烯烃在反应活性上的这种差异被认为是由于COD配合物中烯烃辅助的还原消除作用,其中η配位的二烯可以与其额外的烯烃单元形成键合。对乙烯配合物进行的H/D交换实验表明,从可逆形成的烷基氢化物中间体进行的还原消除可能是速率限制步骤且具有较高的能垒。烯烃氢化反应的推测最终产物将是二氢配合物[Rh(PONOP-Pr)(η-H₂)][BAr],该配合物已被独立合成,并且在NMR时间尺度上会与游离H₂发生交换,也会与D₂发生交换以形成游离HD。当使用更高压力(3 bar)的H₂探究[Rh(PONOP-Pr)(η-乙烯)][BAr]的H₂加成反应时,会产生二氢配合物作为瞬态产物,在此过程中观察到结合的H配体以及游离H的¹H NMR信号增强。这是部分负线形效应的一个独特例子,观察到的二氢配合物信号增强可由已提及的交换过程来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d26c/8456414/95fe605579f1/ic0c03687_0004.jpg

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