2022 Annual Meeting
(532cr) Density Functional Theory (DFT) for Selective Carboxylic Acid Hydrogenation on Ag, Cu-TiO2 Catalysts
Authors
In our work, we provide mechanistic insight using density functional theory (DFT) on the selective hydrogenation of carboxylic acids derived from plastic waste on TiO2 catalysts with Ag or Cu single atoms to facilitate H2 activation. We examine how the redox behavior of these single atom catalysts can affect the electronic character of spillover H atoms and how they may favor the formation of one hydrogenation product over another. We investigate elementary pathways of benzoic acid hydrogenation and how the presence of oxygen vacancies and various states of adsorbed H may alter elementary energetics. Additionally, we study how the inclusion of Ce doped into the TiO2 support alters the catalyst reducibility and the energetics of selective hydrogenation elementary mechanisms. Finally, we propose how our DFT results can be used to predict the behavior of similar candidates for selective hydrogenation reactions and support experimental results from ongoing collaborations.