Institute for Inorganic Chemistry, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.
Institute for Sustainable Chemistry & Catalysis with Boron, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.
Nat Commun. 2023 May 13;14(1):2764. doi: 10.1038/s41467-023-36251-3.
The Fischer carbene synthesis, involving the conversion of a transition metal (TM)-bound CO ligand to a carbene ligand of the form [=C(OR')R] (R, R' = organyl groups), is one of the seminal reactions in the history of organometallic chemistry. Carbonyl complexes of p-block elements, of the form [E(CO)] (E = main-group fragment), are much less abundant than their TM cousins; this scarcity and the general instability of low-valent p-block species means that replicating the historical reactions of TM carbonyls is often very difficult. Here we present a step-for-step replica of the Fischer carbene synthesis at a borylene carbonyl involving nucleophilic attack at the carbonyl carbon followed by electrophilic quenching at the resultant acylate oxygen atom. These reactions provide borylene acylates and alkoxy-/silyloxy-substituted alkylideneboranes, main-group analogues of the archetypal transition metal acylate and Fischer carbene families, respectively. When either the incoming electrophile or the boron center has a modest steric profile, the electrophile instead attacks at the boron atom, leading to carbene-stabilized acylboranes - boron analogues of the well-known transition metal acyl complexes. These results constitute faithful main-group replicas of a number of historical organometallic processes and pave the way to further advances in the field of main-group metallomimetics.
费歇尔卡宾合成反应,涉及将过渡金属(TM)结合的 CO 配体转化为形式为[=C(OR')R]的卡宾配体(R、R'=有机基团),是有机金属化学史上的开创性反应之一。形式为[E(CO)]的 p 区元素羰基配合物(E=主族片段)比其 TM 同类物要少得多;这种稀缺性和低价 p 区物种的普遍不稳定性意味着复制 TM 羰基的历史反应通常非常困难。在这里,我们在涉及羰基碳的亲核进攻以及随后在所得酰氧基原子上的亲电猝灭的硼烯羰基的费歇尔卡宾合成反应中一步一步地进行了复制。这些反应提供了硼烯酰基化物和烷氧基/-硅氧基取代的亚烷基硼烷,分别是典型过渡金属酰基化物和费歇尔卡宾家族的主族类似物。当进入的亲电试剂或硼中心具有适度的空间位阻时,亲电试剂反而会攻击硼原子,导致卡宾稳定的酰基硼烷 - 众所周知的过渡金属酰基配合物的硼类似物。这些结果构成了一系列历史有机金属过程的忠实主族复制品,并为主族金属模拟领域的进一步发展铺平了道路。