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从未存在过的钴氢化物:重访施劳泽的“氢桥合钴卟啉”。

The cobalt hydride that never was: revisiting Schrauzer's "hydridocobaloxime".

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.

出版信息

J Am Chem Soc. 2015 Apr 15;137(14):4860-4. doi: 10.1021/jacs.5b01838. Epub 2015 Apr 6.

Abstract

Molecular cobalt-dmg (dmg = dimethylglyoxime) complexes are an important class of electrocatalysts used heavily in mechanistic model studies of the hydrogen evolution reaction (HER). Schrauzer's early isolation of a phosphine-stabilized "[H-Co(III)(dmgH)2P(nBu)3]" complex has long provided circumstantial support for the plausible intermediacy of Co(III)-H species in HER by cobaloximes in solution. Our investigation of this complex has led to a reassignment of its structure as [Co(II)(dmgH)2P(nBu)3], a complex that contains no hydride ligand and dimerizes to form an unsupported Co-Co bond in the solid state. A paramagnetic S = 3/2 impurity that forms during the synthesis of [Co(II)(dmgH)2P(nBu)3] when exposed to adventitious oxygen has also been characterized. This impurity features a (1)H NMR resonance at -5.06 ppm that was recently but erroneously attributed to the hydride resonance of "[H-Co(III)(dmgH)2P(nBu)3]". We draw attention to this reassignment because of its relevance to cobaloxime hydrides and HER catalysis and because Schrauzer's "hydridocobaloxime" is often cited as the primary example of a bona fide hydride that can be isolated and characterized on this widely studied HER platform.

摘要

分子钴-dmg(dmg = 二甲基乙二肟)配合物是一类重要的电催化剂,在析氢反应(HER)的机理模型研究中被广泛应用。Schrauzer 早期分离出的膦稳定的“[H-Co(III)(dmgH)2P(nBu)3]”配合物,长期以来为溶液中 cobaloxime 中 Co(III)-H 物种的可能中间体提供了间接证据。我们对该配合物的研究导致其结构被重新分配为[Co(II)(dmgH)2P(nBu)3],该配合物不含氢化物配体,在固态中自组装形成无支撑的 Co-Co 键。在[Co(II)(dmgH)2P(nBu)3]的合成过程中,当暴露于环境氧时,会形成一种顺磁 S = 3/2 杂质,该杂质在(1)H NMR 共振中表现为-5.06 ppm 的共振峰,该共振峰最近被错误地归因于“[H-Co(III)(dmgH)2P(nBu)3]”的氢化物共振峰。我们注意到这种重新分配,因为它与 cobaloxime 氢化物和 HER 催化有关,而且 Schrauzer 的“氢代 cobaloxime”通常被引用为可以在这个广泛研究的 HER 平台上分离和表征的真正氢化物的主要实例。

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