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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Amine- and Dimeric Amino-Borane Complexes of the {Rh((PPr3)-Pr-i)(2)}(+) Fragment and Their Relevance to the Transition-Metal-Mediated Dehydrocoupling of Amine-Boranes
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Amine- and Dimeric Amino-Borane Complexes of the {Rh((PPr3)-Pr-i)(2)}(+) Fragment and Their Relevance to the Transition-Metal-Mediated Dehydrocoupling of Amine-Boranes

机译:{Rh((PPr3)-Pr-i)(2)}(+)片段的胺和二聚氨基硼烷配合物及其与过渡金属介导的胺-硼烷脱氢偶联的关系

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摘要

Complexes formed between {Rh((PPr3)-Pr-i)(2)}(+) Or {Rh(H)(2)((PPr3)-Pr-i)(2)}(+) fragments and the amine- and dimeric aminoborane sigma ligands H3B center dot NMe3 and [H2BNMe2](2) have been prepared and their solution and solid-state structures determined: [Rh((PPr3)-Pr-i)(2)(eta(2)-H3B center dot NMe3)][BAr4F] (1), [Rh((PPr3)-Pr-i)(2){eta(2)-(H2B center dot NMe2)(2)}][BAr4F] (2), [Rh(H)(2)((PPr3)-Pr-i)(2)(eta(2)-H3B center dot NMe3)][BAr4F](3), and [Rh(H)(2)((PPr3)-Pr-i)(2)][eta(2)-(H2BN center dot Me-2)(2)][BAr4F](4) [Ar-F = C6H3(CF3)(2)], The last compound was only observed in the solid state, as in solution it dissociates to give [Rh(H)(2)((PPr3)-Pr-i)(2)] [BAr4F] and [H2B center dot NMe2](2) due to steric pressure between the ligand and the metal fragment. The structures and reactivities of these new complexes are compared with the previously reported tri-isobutyl congeners. On the basis of B-11 and (H) NMR spectroscopy in solution and the Rh center dot center dot center dot B distances measured in the solid state, the P'Pr3 complexes show tighter interactions with the a ligands compared to the (PBu3)-Bu-i complexes for the Rh(I) species and a greater stability toward H-2 loss for the Rh(III) salts. For the Rh(I) species (1 and 2), this is suggested to be due to electronic factors associated with the bending of the ML2 fragment. For the Rh(III) complexes (3 and 4), the underlying reasons for increased stability toward H-2 loss are not as clear, but steric factors are suggested to influence the relative stability toward a loss of dihydrogen, although other factors, such as supporting agostic interections, might also play a part. These tighter interactions and a slower H-2 loss are reflected in a catalyst that turns over more slowly in the dehydrocoupling of H3B center dot NHMe2 to give the dimeric amino-borane [H2BNMe2](2), when compared with the (PBu3)-Bu-i-ligated catalyst (ToF 4 h(-1), c.f., 15 h(-1), respectively). The addition of excess MeCN to 1, 2, or 3 results in the displacement of the (sigma-ligand and the formation of the adduct species trans-[Rh((PPr3)-Pr-i)(2)(NCMe)(2))[BAr4F] (with 1 and 2) and the previously reported [Rh(H)(2)((PPr3)-Pr-i)(2)(NCMe)(2)][BAr4F] (with 3).
机译:{Rh((PPr3)-Pr-i)(2)}(+)或{Rh(H)(2)((PPr3)-Pr-i)(2)}(+)片段与胺之间形成的络合物-和二聚氨基硼烷sigma配体H3B中心点NMe3和[H2BNMe2](2)已制备,并确定了它们的溶液和固态结构:[Rh((PPr3)-Pr-i)(2)(eta(2)- H3B中心点NMe3)] [BAr4F](1),[Rh((PPr3)-Pr-i)(2){eta(2)-(H2B中心点NMe2)(2)}] [BAr4F](2) ,[Rh(H)(2)((PPr3)-Pr-i)(2)(eta(2)-H3B中心点NMe3)] [BAr4F](3)和[Rh(H)(2)( (PPr3)-Pr-i)(2)] [eta(2)-(H2BN中心点Me-2)(2)] [BAr4F](4)[Ar-F = C6H3(CF3)(2)],仅在固态下观察到最后一种化合物,因为在溶液中它解离生成[Rh(H)(2)((PPr3)-Pr-1)(2)] [BAr4F]和[H2B中心点NMe2]( 2)由于配体和金属片段之间的空间压力。这些新的配合物的结构和反应性与以前报道的三异丁基同源物进行了比较。根据溶液中的B-11和(H)NMR光谱以及以固态测量的Rh中心点中心点中心点B距离,与(PBu3)相比,P'Pr3配合物与a配体的相互作用更紧密-Bu-i复合物可用于Rh(I)物种,Rh(III)盐对H-2损失具有更大的稳定性。对于Rh(I)物种(1和2),建议这是由于与ML2片段弯曲相关的电子因素引起的。对于Rh(III)配合物(3和4),对于H-2损失增加的稳定性的根本原因尚不清楚,但建议使用空间因素来影响对氢损失的相对稳定性,尽管还有其他因素,例如作为支持恐怖冲突的原因,也可能起作用。与(PBu3)-相比,这些更紧密的相互作用和更慢的H-2损失反映在H3B中心点NHMe2脱氢偶联生成二聚氨基-硼烷[H2BNMe2](2)的催化剂中,转换更慢。 Bu-i-连接的催化剂(分别为ToF 4 h(-1),cf,15 h(-1))。将过量的MeCN添加至1、2或3会导致(σ配体)置换并形成加成物trans- [Rh((PPr3)-Pr-i)(2)(NCMe)(2 ))[BAr4F](带有1和2)和先前报道的[Rh(H)(2)((PPr3)-Pr-1)(2)(NCMe)(2)] [BAr4F](带有3)。

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