Abstract
AbstractThe development of surface-immobilized molecular redox catalysts is an emerging research field with promising applications in sustainable chemistry. In electrocatalysis, paramagnetic species are often key intermediates in the mechanistic cycle but are inherently difficult to detect and follow by conventional in situ techniques. We report a new method, operando film-electrochemical electron paramagnetic resonance spectroscopy (FE-EPR), which enables mechanistic studies of surface-immobilized electrocatalysts. This technique enables radicals formed during redox reactions to be followed in real time under flow conditions, at room temperature and in aqueous solution. Detailed insight into surface-immobilized catalysts, as exemplified here through alcohol oxidation catalysis by a surface-immobilized nitroxide, is possible by detecting active-site paramagnetic species sensitively and quantitatively operando, thereby enabling resolution of the reaction kinetics. Our finding that the surface electron-transfer rate, which is of the same order of magnitude as the rate of catalysis (accessible from operando FE-EPR), limits catalytic efficiency has implications for the future design of better surface-immobilized catalysts.
Publisher
Springer Science and Business Media LLC
Reference77 articles.
1. Bracci, M. et al. in Electron Paramagnetic Resonance Vol. 27 (eds Chechick, V. et al.) 1–46 (Royal Society of Chemistry, 2020).
2. Goswami, M., Chirila, A., Rebreyend, C. & de Bruin, B. EPR spectroscopy as a tool in homogeneous catalysis research. Top. Catal. 58, 719–750 (2015).
3. den Hartog, S. et al. Electrocatalysis under a magnetic lens: a combined electrochemistry and electron paramagnetic resonance review. Electrochim. Acta 407, 139704 (2022).
4. Beejapur, H. A. et al. TEMPO in chemical transformations: from homogeneous to heterogeneous. ACS Catal. 9, 2777–2830 (2019).
5. Sheldon, R. A. E factors, green chemistry and catalysis: an odyssey. Chem. Commun. 2008, 3352–3365 (2008).
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