Department of Chemistry and Biochemistry, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio 43210, USA.
Dalton Trans. 2022 Jul 5;51(26):10148-10159. doi: 10.1039/d2dt01484j.
Although cobalt(I) bis-phosphine complexes have been implicated in many selective C-C bond-forming reactions, until recently relatively few of these compounds have been fully characterized or have been shown to be intermediates in catalytic reactions. In this paper we present a new practical method for the synthesis and isolation of several cobalt(I)-bis-phosphine complexes and their use in Co(I)-catalyzed reactions. We find that easily prepared ( generated or isolated) bis-phosphine and (2,6--aryliminoethyl)pyridine (PDI) cobalt(II) halide complexes are readily reduced by 1,4-bis-trimethylsilyl-1,4-dihydropyrazine or commercially available lithium nitride (LiN), leaving behind only innocuous volatile byproducts. Depending on the structures of the bis-phosphines, the cobalt(I) complex crystallizes as a phosphine-bridged species [(P∼P)(X)Co[μ-(P∼P)]Co(X)(P∼P)] or a halide-bridged species [(P∼P)Co[μ-(X)]Co(P∼P)]. Because the side-products are innocuous, these methods can be used for the generation of catalytically competent Co(I) complexes for a variety of low-valent cobalt-catalyzed reactions of even sensitive substrates. These complexes are also useful for the synthesis of rare cationic [(P∼P)Co-η-diene] X or [(P∼P)Co-η-arene] X complexes, which are shown to be excellent single-component catalysts for the following regioselective reactions of dienes: heterodimerizations with ethylene or methyl acrylate, hydroacylation and hydroboration. The reactivity of the single-component catalysts with the generated species are also documented.
尽管钴(I)双膦配合物已被牵涉到许多选择性的 C-C 键形成反应中,但直到最近,这些化合物中只有相对较少的被完全表征或被证明是催化反应的中间体。在本文中,我们提出了一种新的实用方法来合成和分离几种钴(I)-双膦配合物,并将其用于钴(I)催化反应。我们发现,容易制备的(生成或分离的)双膦和(2,6--芳基亚氨基乙基)吡啶(PDI)钴(II)卤化物配合物很容易被 1,4-双三甲基硅基-1,4-二氢吡嗪或市售的氮化锂(LiN)还原,只留下无害的挥发性副产物。根据双膦的结构,钴(I)配合物结晶为膦桥联物种[(P∼P)(X)Co[μ-(P∼P)]Co(X)(P∼P)]或卤桥联物种[(P∼P)Co[μ-(X)]Co(P∼P)]。由于副产物是无害的,这些方法可用于生成各种低价钴催化反应的催化有效钴(I)配合物,即使是对敏感底物也是如此。这些配合物也可用于合成罕见的阳离子[(P∼P)Co-η-二烯] X 或[(P∼P)Co-η-芳烃] X 配合物,它们被证明是以下区域选择性反应的优秀单组分催化剂:与乙烯或甲基丙烯酸甲酯的杂二聚、氢酰化和硼氢化。还记录了单组分催化剂与生成的物种的反应性。