Sinha Vivek, Khramenkova Elena, Pidko Evgeny A
Inorganic Systems Engineering, Department of Chemical Engineering, Faculty of Applied Sciences, Delft University of Technology Delft The Netherlands
Chem Sci. 2022 Feb 24;13(13):3803-3808. doi: 10.1039/d1sc07119j. eCollection 2022 Mar 30.
The electrocatalytic CO reduction reaction (CORR) is one of the key technologies of the clean energy economy. Molecular-level understanding of the CORR process is instrumental for the better design of electrodes operable at low overpotentials with high current density. The catalytic mechanism underlying the turnover and selectivity of the CORR is modulated by the nature of the electrocatalyst, as well as the electrolyte liquid, and its ionic components that form the electrical double layer (EDL). Herein we demonstrate the critical non-innocent role of the EDL for the activation and conversion of CO at a high cathodic bias for electrocatalytic conversion over a silver surface as a representative low-cost model cathode. By using a multiscale modeling approach we demonstrate that under such conditions a dense EDL is formed, which hinders the diffusion of CO towards the Ag111 electrocatalyst surface. By combining DFT calculations and molecular dynamics simulations we identify favorable pathways for CO reduction directly over the EDL without the need for adsorption to the catalyst surface. The dense EDL promotes homogeneous phase reduction of CO electron transfer from the surface to the electrolyte. Such an outer-sphere mechanism favors the formation of formate as the CORR product. The formate can undergo dehydration to CO a transition state stabilized by solvated alkali cations in the EDL.
电催化CO还原反应(CORR)是清洁能源经济的关键技术之一。从分子层面理解CORR过程有助于更好地设计能够在低过电位和高电流密度下运行的电极。CORR的周转和选择性背后的催化机制受电催化剂的性质、电解质液体及其形成双电层(EDL)的离子成分的调节。在此,我们展示了在作为代表性低成本模型阴极的银表面上,对于电催化转化在高阴极偏压下CO的活化和转化,双电层起着至关重要的非无辜作用。通过使用多尺度建模方法,我们证明在这种条件下会形成致密的双电层,这阻碍了CO向Ag111电催化剂表面的扩散。通过结合密度泛函理论(DFT)计算和分子动力学模拟,我们确定了直接在双电层上进行CO还原的有利途径,而无需吸附到催化剂表面。致密的双电层促进了CO的均相还原以及从表面到电解质的电子转移。这种外层球机制有利于形成甲酸盐作为CORR产物。甲酸盐可脱水生成CO,一种由双电层中溶剂化碱金属阳离子稳定的过渡态。