Isonitrile Insertion into Titanium Neopentylidene Alkyl Complexes Yields a Bifurcated Pathway to Form κ1-N-vinylamido or κ2-C,N-azaalleneyl Fragments

IF 2.5 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR
John B. Russell, Michael R. Gau, Patrick J. Carroll and Daniel J. Mindiola*, 
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引用次数: 0

Abstract

Three organometallic ligand scaffolds resulting from the insertion of 1-adamantyl isonitrile (C≡NAd; Ad = C10H15) into titanium neopentylidene complexes, [(PNP)Ti═CHtBu(X)] are described herein. Treatment of the titanium neopentylidene complex (PNP)Ti═CHtBu(OTf) (1-OTf, PNP = N[2-PiPr2-4-methylphenyl]2, OTf = trifluoromethanesulfonate) with one equivalent of C≡NAd leads to the formation of a titanium η2-C,N-ketenimine, (PNP)Ti(η2-C,N-AdNCCHtBu)(OTf) (2-OTf). However, when the titanium neopentylidene neopentyl complex (PNP)Ti═CHtBu(CH2tBu) (1-Np) is added one equivalent of C≡NAd, a titanium neopentylidene κ1-N-vinylamido complex (PNP)Ti═CHtBu(κ1-N-AdNCHCHtBu) (3) is formed. In contrast, the titanium neopentylidene methyl complex (PNP)Ti═CHtBu(CH3) (1-Me) reacts with one equivalent of C≡NAd to produce a rare chelating κ2-C,N-azaalleneyl ligand, in the complex (PNP)Ti(κ2-C,N-AdNCCtBu) (4), with concurrent extrusion of methane. Independently, it is shown that treatment of 2-OTf with one equivalent of neopentyl lithium (LiNp, Np = CH2tBu) or a half equivalent of dimethyl magnesium (MgMe2) smoothly forms complex 3 or 4, respectively, and suggests that the η2-C,N-ketenimine ligand in 2-OTf might be an intermediate ligand enroute to the neopentylidene κ1-N-vinylamido or κ2-C,N-azaalleneyl complexes. Complexes 2-OTf, 3 and 4 have been structurally and spectroscopically characterized and a proposed mechanism for the formation of complexes 3 and 4 is also described.

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来源期刊
Organometallics
Organometallics 化学-无机化学与核化学
CiteScore
5.60
自引率
7.10%
发文量
382
审稿时长
1.7 months
期刊介绍: Organometallics is the flagship journal of organometallic chemistry and records progress in one of the most active fields of science, bridging organic and inorganic chemistry. The journal publishes Articles, Communications, Reviews, and Tutorials (instructional overviews) that depict research on the synthesis, structure, bonding, chemical reactivity, and reaction mechanisms for a variety of applications, including catalyst design and catalytic processes; main-group, transition-metal, and lanthanide and actinide metal chemistry; synthetic aspects of polymer science and materials science; and bioorganometallic chemistry.
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