Nafady Ayman, Costa Paulo Jorge, Calhorda Maria José, Geiger William E
Department of Chemistry, University of Vermont, Burlington, VT 05405, USA.
J Am Chem Soc. 2006 Dec 27;128(51):16587-99. doi: 10.1021/ja0653775.
Anodic oxidation of the important half-sandwich compound CoCp(CO)2, 1, has been studied under gentle electrolyte conditions, e.g., chlorinated hydrocarbons with weakly coordinating anion (WCA) supporting electrolyte anions. The 17-electron cation 1+ produced at E(1/2)(1) = 0.37 V vs FeCp2(0/+) undergoes a surprising reaction with neutral 1 to form the dimer radical cation [Co2Cp2(CO)4] +, 2+, which has a metal-metal bond unsupported by bridging ligands. The dimer radical is oxidized at a slightly more positive potential (E(1/2) = 0.47 V) to the corresponding dication 2(2+). Observation of the oxidation of 2+ is without precedent in confirming a radical-substrate (R-S) dimerization process by direct voltammetric detection of the R-S intermediate, K(eq) = 3 x 10(4) M(-1) for [2+]/[1][1+]. The R-S mechanism and the reaction products have been characterized by voltammetry, electrolysis, fiber-optic IR spectroscopy, and ESR measurements. DFT calculations indicate that removal of an electron from 1 results in rehybridization in 1+, thereby opening the metal center for interaction with the neutral compound 1, which has a relatively basic metal center. The LUMO of the dimer dication 2(2+) is metal-metal antibonding, and its half-occupancy in 2+ results in lengthening of the Co-Co bond from 2.64 A to 3.14 A. Inclusion of solvent in the (COSMO) calculations shows that solvation effects are necessary to account for the fact that E(1/2)(2) > E(1/2)(1). These results show the importance of medium effects in probing the fundamental redox chemistry of half-sandwich metal complexes.
在温和的电解质条件下,例如在含有弱配位阴离子(WCA)支持电解质阴离子的氯代烃中,研究了重要的半夹心化合物CoCp(CO)₂(1)的阳极氧化。在相对于FeCp₂(0/+)的E(1/2)(1) = 0.37 V时产生的17电子阳离子1⁺与中性的1发生了惊人的反应,形成了二聚体自由基阳离子[Co₂Cp₂(CO)₄]⁺(2⁺),其金属-金属键没有桥连配体的支撑。二聚体自由基在稍正的电位(E(1/2) = 0.47 V)下被氧化为相应的二价阳离子2²⁺。通过直接伏安检测R-S中间体来确认自由基-底物(R-S)二聚化过程,2⁺的氧化观察尚无先例,对于[2⁺]/[1][1⁺],K(eq) = 3×10⁴ M⁻¹。通过伏安法、电解、光纤红外光谱和电子顺磁共振测量对R-S机理和反应产物进行了表征。密度泛函理论计算表明,从1中去除一个电子会导致1⁺中的重新杂化,从而打开金属中心以与具有相对碱性金属中心的中性化合物1相互作用。二聚体二价阳离子2²⁺的最低未占分子轨道是金属-金属反键,其在2⁺中的半占据导致Co-Co键从2.64 Å延长到3.14 Å。在(COSMO)计算中包含溶剂表明,溶剂化效应对于解释E(1/2)(2) > E(1/2)(1)这一事实是必要的。这些结果表明了介质效应在探究半夹心金属配合物基本氧化还原化学中的重要性。