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首页> 外文期刊>Chemical science >Alkali-metal-mediated zincation (AMMZn) meets N-heterocyclic carbene (NHC) chemistry: Zn-H exchange reactions and structural authentication of a dinuclear Au(I) complex with a NHC anion
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Alkali-metal-mediated zincation (AMMZn) meets N-heterocyclic carbene (NHC) chemistry: Zn-H exchange reactions and structural authentication of a dinuclear Au(I) complex with a NHC anion

机译:碱金属介导的锌化(AMMZn)符合N-杂环卡宾(NHC)化学:Zn-H交换反应和具有NHC阴离子的双核Au(I)配合物的结构鉴定

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摘要

Merging two evolving areas in synthesis, namely cooperative bimetallics and N-heterocydic carbenes (NHCs), this study reports the isolation of the first intermediates of alkali-metal-mediated zincation (AMMZn) of a free NHC and a Zn-NHC complex using sodium zincate [(TMEDA)NaZn(TMP)(tBu)2] (1) as a retaliating reagent. The structural authentication of (THF)3Na[:C{[N(2,6-/Pr2C6H3)]2CHCZn(tBu2)}] (2) and [Na(THF)6]~+[tBu2Zn:C{[N(2,6-iPr2C6H3)]2CHCZn(tBu2)}]~- (4), resulting from the reactions of 1 with unsaturated free NHC IPr (IPr = 1,3-bis(2,6-di-isopropylphenylimidazole-2-ylidene) and NHC complex ZntBu2IPr (3) respectively demonstrates that in both cases, this mixed-metal approach can easily facilitate the selective C4 zincation of the unsaturated backbone of the NHC ligand. Furthermore, the generation of anionic NHC fragments enables dual coordination through their normal (C2) and abnormal (C4) positions to the bimetallic system, stabilising the kinetic AMMZn intermediates which normally go undetected and provides new mechanistic insights in to how these mixed-metal reagents operate. In stark contrast to this bimetallic approach when NHC-complex 3 is reacted with a more conventional single-metal base such as tBuLi, the deprotonation of the coordinated carbene is inhibited, favouring instead, co-complexation to give NHC-stabilised [IPr·LiZntBu3] (5). Showing the potential of 2 to act as a transfer agent of its anionic NHC unit to transition metal complexes, this intermediate reacts with two molar equivalents of [CIAu(PPh3)] to afford the novel digold species [CIAu:C{[N(2,6-iPr2C6H3)]2CHCAu(PPh3)}] (6) resulting from an unprecedented double transmetallation reaction which involves the simultaneous exchange of both cationic (Na~+) and neutral (ZntBu2) entities on the NHC framework.
机译:融合了合成中两个不断发展的领域,即协同双金属和N-杂环卡宾(NHC),该研究报告了使用钠分离游离NHC和Zn-NHC络合物的碱金属介导的锌化(AMMZn)的第一中间体锌盐[(TMEDA)NaZn(TMP)(tBu)2](1)作为报复试剂。 (THF)3Na [:C {[N(2,6- / Pr2C6H3)] 2CHCZn(tBu2)}](2)和[Na(THF)6]〜+ [tBu2Zn:C {[N( (2),6-iPr2C6H3)] 2CHCZn(tBu2)}]〜-(4),是由1与不饱和游离NHC IPr(IPr = 1,3-双(2,6-二异丙基苯基咪唑-2-亚烷基) )和NHC络合物ZntBu2IPr(3)分别表明,在两种情况下,这种混合金属方法都可以轻松促进NHC配体不饱和骨架的选择性C4锌化;此外,阴离子NHC片段的产生可通过其正常状态进行双配位(C2)和异常(C4)在双金属系统中的位置,稳定了通常未被发现的动力学AMMZn中间体,并为这些混合金属试剂的工作方式提供了新的机械原理。与NHC-络合物3时的双金属方法形成了鲜明的对比。与更传统的单金属碱(例如tBuLi)反应,可抑制配位卡宾的去质子反应,有利于络合得到NHC稳定的[IPr·LiZntBu3](5)。该中间体显示2充当其阴离子NHC单元过渡金属络合物的转移剂的潜力,该中间体与2摩尔当量的[CIAu(PPh3)]反应,从而提供新的双配体物种[CIAu:C {[N(2 ,6-iPr2C6H3)] 2CHCAu(PPh3)}](6)是由前所未有的双重金属转移反应所引起的,该反应涉及同时在NHC框架上交换阳离子(Na〜+)和中性(ZntBu2)实体。

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