About

Log in?

DTU users get better search results including licensed content and discounts on order fees.

Anyone can log in and get personalized features such as favorites, tags and feeds.

Log in as DTU user Log in as non-DTU user No thanks

DTU Findit

Journal article

Theoretical Approaches to Describing the Oxygen Reduction Reaction Activity of Single-Atom Catalysts

From

Stanford University1

SLAC National Accelerator Laboratory2

Department of Physics, Technical University of Denmark3

University of California at Davis4

Single atom catalysts have recently emerged as promising low-cost alternatives to Pt for the oxygen reduction reaction (ORR). Given the unique properties that distinguish these systems from traditional transition metal electrocatalysts, it is essential to benchmark and establish appropriate computational approaches to study these novel materials.

Herein, we employ multiple levels of theory, including wave function methods, density functional theory (DFT), and classical simulations to investigate Cu-modified covalent triazine framework catalysts (Cu/CTF). We consider three major aspects of treating this system computationally. First, we present a step-wise approach to predict the ORR mechanism and adsorbate coverages on Cu/CTF.

We then benchmark various DFT methods to coupled cluster theory with the domain based local pair-natural orbital (DLPNO) approximation, which indicates that HSE06 and PBE0 hybrid functionals most accurately describe the adsorption energies of ORR adsorbates on Cu/CTF. We finally employ thermodynamic integration and other techniques to consider solvation effects, which play significant roles in predicting the energies of reaction intermediates and the overall ORR pathway.

Our findings indicate that accurate descriptions of both electronic structure and solvation are necessary to understand the ORR activity of Cu/CTF.

Language: English
Publisher: American Chemical Society
Year: 2018
Pages: 29307-29318
ISSN: 19327455 and 19327447
Types: Journal article
DOI: 10.1021/acs.jpcc.8b09430
ORCIDs: 0000-0002-0590-7619 , 0000-0002-1192-4634 , 0000-0003-1168-8616 and Nørskov, Jens K.

DTU users get better search results including licensed content and discounts on order fees.

Log in as DTU user

Access

Analysis