(389f) The Effect of Electrode Potential on the Stability of Intermediates Involved in Both Electrochemical CO2 Reduction and Hydrogen Evolution
AIChE Annual Meeting
2018
2018 AIChE Annual Meeting
Catalysis and Reaction Engineering Division
Computational Catalysis III: Electrocatalysis
Tuesday, October 30, 2018 - 5:00pm to 5:18pm
Here we employed grand-canonical quantum mechanics (GC-QM) based the density functional theory (DFT) to investigate the effect of U on the adsorption free energies (ÎGs) of 14 CO2ER intermediates on Cu(111) as well as the intermediate of the competing hydrogen evolution reaction (HER).6 In contrast to many previous theoretical studies in which the ÎGs were calculated under constant charge, we calculated the ÎGs under constant potentials. By comparing the ÎGs calculated under constant potential to those calculated under constant charge, significant differences were observed, especially when the adsorption of intermediate resulted in a significant work function change. In addition, the effect of U on the reaction free energy (ÎG) of the crucial elementary steps for CO2ER and HER on a series of metallic catalysts were investigated at pH = 0. Our results indicate that the influence of U is metal-dependent for CO2ER. However, for HER, ÎG*H was barely affected by U for the studied metals. By analysing all the free energies obtained in this study, we found substantial differences (> 0.22 eV in average) between the ÎGs calculated under constant charge and those calculated under U = -1.0 VSHE, indicating the importance of using GC-QM based DFT calculations in computational study of CO2ER.
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6 H. Zhang, W. A. Goddard, Q. Lu and M. J. Cheng, Phys. Chem. Chem. Phys., 2018, 20, 2549-2557.
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