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Journal article

Acetonitrile Transition Metal Interfaces from First Principles

From

SLAC National Accelerator Laboratory1

Catalysis Theory Center, Department of Physics, Technical University of Denmark2

Department of Physics, Technical University of Denmark3

Acetonitrile is among the most commonly used nonaqueous solvents in catalysis and electrochemistry. We study its interfaces with multiple facets of the metals Ag, Cu, Pt, and Rh using density functional theory calculations; the structures reported shed new light on experimental observations and underscore the importance of solvent-solvent interactions at high coverage.

We investigate the relationship of potential of zero charge (PZC) to metal work function, reporting results in agreement with experimental measurements. We develop a model to explain the effects of solvent chemisorption and orientation on the PZC to within a mean absolute deviation of 0.08-0.12 V for all facets studied.

Our electrostatic field dependent phase diagram agrees with spectroscopic observations and sheds new light on electrostatic field effects. This work provides new insight into experimental observations on acetonitrile metal interfaces and provides guidance for future studies of acetonitrile and other nonaqueous solvent interfaces with transition metals.

Language: English
Publisher: American Chemical Society
Year: 2020
Pages: 9802-9811
ISSN: 19487185
Types: Journal article
DOI: 10.1021/acs.jpclett.0c02692
ORCIDs: 0000-0002-2921-0488 , 0000-0003-0442-9691 and Nørskov, Jens K.

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