Cook Timothy D, Tyler Sarah F, McGuire Caitlyn M, Zeller Matthias, Fanwick Phillip E, Evans Dennis H, Peters Dennis G, Ren Tong
Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907, United States.
Department of Chemistry, Indiana University Bloomington, 800 E Kirkwood Avenue, Bloomington, Indiana 47405, United States.
ACS Omega. 2017 Jul 26;2(7):3966-3976. doi: 10.1021/acsomega.7b00714. eCollection 2017 Jul 31.
Several nickel(II) complexes of cyclams bearing aryl groups on the carbon backbone were prepared and evaluated for their propensity to catalyze the electrochemical reduction of CO to CO and/or H to H, representing the first catalytic analysis to be performed on an aryl-cyclam metal complex. Cyclic voltammetry (CV) revealed the attenuation of catalytic activity when the aryl group bears the strong electron-withdrawing trifluoromethyl substituent, whereas the phenyl, -tolyl, and aryl-free derivatives displayed a range of catalytic activities. The gaseous-product distribution for the active complexes was determined by means of controlled-potential electrolysis (CPE) and revealed that the phenyl derivative is the most active as well as the most selective for CO reduction over proton reduction. Stark differences in the activity of the complexes studied are rationalized through comparison of their X-ray structures, absorption spectra, and CPE profiles. Further CV studies on the phenyl derivative were undertaken to provide a kinetic insight.
制备了几种在碳骨架上带有芳基的环胺镍(II)配合物,并评估了它们催化CO电化学还原为CO和/或H电化学还原为H₂的倾向,这是对芳基环胺金属配合物进行的首次催化分析。循环伏安法(CV)表明,当芳基带有强吸电子三氟甲基取代基时,催化活性会减弱,而苯基、对甲苯基和无芳基衍生物则表现出一系列催化活性。通过控制电位电解(CPE)确定了活性配合物的气态产物分布,结果表明苯基衍生物在CO还原方面比质子还原具有最高的活性和选择性。通过比较所研究配合物的X射线结构、吸收光谱和CPE曲线,解释了所研究配合物活性的显著差异。对苯基衍生物进行了进一步的CV研究,以提供动力学见解。