Department of Chemistry and Center for Catalysis , University of California-Riverside , Riverside , California 92521 , United States.
Department of Chemistry and Biochemistry , University of California-San Diego , La Jolla , California 92093 , United States.
J Am Chem Soc. 2020 Jan 8;142(1):251-256. doi: 10.1021/jacs.9b10234. Epub 2019 Dec 19.
Weakly coordinating anions (WCAs) are generally tailored to act as spectators with little or no function. Here we describe the implementation of strongly coordinating dianionic carboranyl N-heterocyclic carbenes (NHCs) to create organometallic -ate complexes of Au(I) that serve both as WCAs and functional catalysts. These organometallic WCAs can be utilized to form both heterobimetallic (Au(I)/Ag(I); Au(I)/Ir(I)) and organometallic/main group ion pairs (Au(I)/(CPh or SiEt). Because parent unfunctionalized dianionic carboranyl NHC complex is unstable in most solvents when paired with CPh, novel synthesis methodology was devised to create polyhalogenated carboranyl NHCs, which show superior stability toward electrophilic substitution and cyclometalation chemistry. Additionally, the WCAs containing polyhalogenated carboranyl NHCs are among the most active catalysts reported for the hydroamination of alkynes. This investigation has also produced the first examples of a low-coordinate Au(III) center with two cis accessible coordination sites and the first true dianionic carbene. These studies pave the way for the design of functional ion pairs that have the potential to participate in tandem or cooperative small-molecule activation and catalysis.
弱配位阴离子(WCAs)通常被设计为仅作为旁观者发挥作用,几乎没有或没有功能。在这里,我们描述了强配位二阴离子碳硼烷 N-杂环卡宾(NHC)的实施,以创建作为 WCAs 和功能催化剂的金(I)有机金属 - 化物配合物。这些有机金属 WCAs 可用于形成异双金属(金(I)/银(I);金(I)/铱(I))和有机金属/主族离子对(金(I)/(CPh 或 SiEt)。由于与 CPh 配对时未官能化的双亲 NHC 配合物 的母体在大多数溶剂中不稳定,因此设计了新的合成方法来制备多卤代碳硼烷 NHC,其对亲电取代和环金属化化学具有优异的稳定性。此外,含有多卤代碳硼烷 NHC 的 WCAs 是报道的炔烃氢胺化最活跃的催化剂之一。这项研究还产生了首例具有两个顺式可及配位位的低配位金(III)中心和第一个真正的二阴离子卡宾。这些研究为设计具有参与串联或协同小分子活化和催化潜力的功能离子对铺平了道路。