Loewen Natalia D, Thompson Emily J, Kagan Michael, Banales Carolina L, Myers Thomas W, Fettinger James C, Berben Louise A
Department of Chemistry , University of California Davis , CA 95616 , USA . Email:
Chem Sci. 2016 Apr 21;7(4):2728-2735. doi: 10.1039/c5sc03169a. Epub 2016 Jan 5.
Proton relays are known to increase reaction rates for H evolution and lower overpotentials in electrocatalytic reactions. In this report we describe two electrocatalysts, [FeN(CO)(PPh)] () which has no proton relay, and hydroxyl-containing [FeN(CO)(PhP(CH)OH)] (). Solid state structures indicate that these phosphine-substituted clusters are direct analogs of [FeN(CO)] where one CO ligand has been replaced by a phosphine. We show that the proton relay changes the selectivity of reactions: CO is reduced selectively to formate by in the absence of a relay, and protons are reduced to H under a CO atmosphere by . These results implicate a hydride intermediate in the mechanism of the reactions and demonstrate the importance of controlling proton delivery to control product selectivity. Thermochemical measurements performed using infrared spectroelectrochemistry provided p and hydricity values for [HFeN(CO)(PPh)], which are 23.7, and 45.5 kcal mol, respectively. The p of the hydroxyl group in was determined to fall between 29 and 41, and this suggests that the proximity of the proton relay to the active catalytic site plays a significant role in the product selectivity observed, since the acidity alone does not account for the observed results. More generally, this work emphasizes the importance of substrate delivery kinetics in determining the selectivity of CO reduction reactions that proceed through metal-hydride intermediates.
已知质子中继可提高析氢反应速率并降低电催化反应中的过电位。在本报告中,我们描述了两种电催化剂,无质子中继的[FeN(CO)(PPh)]()和含羟基的[FeN(CO)(PhP(CH)OH)]()。固态结构表明,这些膦取代簇是[FeN(CO)]的直接类似物,其中一个CO配体被膦取代。我们表明,质子中继改变了反应的选择性:在没有中继的情况下,通过将CO选择性还原为甲酸盐,而在CO气氛下,通过将质子还原为H。这些结果表明反应机理中存在氢化物中间体,并证明了控制质子传递以控制产物选择性的重要性。使用红外光谱电化学进行的热化学测量提供了[HFeN(CO)(PPh)]的p和酸度值,分别为23.7和45.5 kcal/mol。确定中的羟基的p值在29至41之间,这表明质子中继与活性催化位点的接近程度在观察到的产物选择性中起重要作用,因为仅酸度不能解释观察到的结果。更一般地说,这项工作强调了底物传递动力学在确定通过金属氢化物中间体进行的CO还原反应选择性方面的重要性。