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  4. Oxygen Evolution at the BiVO4-Water Interface: Mechanism of the Water Dehydrogenation Reaction
 
research article

Oxygen Evolution at the BiVO4-Water Interface: Mechanism of the Water Dehydrogenation Reaction

Lyu, Sai  
•
Wiktor, Julia  
•
Pasquarello, Alfredo  
October 7, 2022
Acs Catalysis

We study the water dehydrogenation reaction at the BiVO4(010)-water interface by combining nudged-elastic-band calculations and electronic structure calculations at the hybrid functional level. We investigate the pathway and the kinetic barrier for the adiabatic reaction going from the hole polaron localized in BiVO4 to the dehydrogenation of the adsorbed water molecule at the interface. The reaction is found to involve the H2O center dot+ radical cation as an intermediate, to have a kinetic barrier of 0.7 eV, and to be initiated by the electron transfer. The calculated kinetic barrier is in good agreement with experiment and is consistent with the slow hole transfer kinetics observed at the surface of BiVO4. To characterize the structural changes occurring during this process, we analyze the O-H distances for three relevant water molecules. We also examine the Wannier functions around the O atom of the adsorbate involved in the reaction to reveal the changes in the electronic structure during the hole hopping. The projected density of states of the lowest unoccupied molecular orbitals allows us to identify the atomic orbitals that are primarily involved in the reaction. We expect that the proposed reaction mechanism generally holds when the surface coverage is dominated by molecularly adsorbed water.

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Type
research article
DOI
https://doi.org/10.1021/acscatal.2c03331
Web of Science ID

WOS:000870016200001

Author(s)
Lyu, Sai  
Wiktor, Julia  
Pasquarello, Alfredo  
Date Issued

2022-10-07

Publisher

AMER CHEMICAL SOC

Published in
Acs Catalysis
Volume

12

Issue

19

Start page

11734

End page

11742

Subjects

Chemistry, Physical

•

Chemistry

•

photocatalytic water splitting

•

water oxidation kinetics

•

bismuth vanadium oxide

•

nudged-elastic-band calculations

•

water radical cation

•

visible-light

•

metal-oxides

•

heterogeneous photocatalysis

•

bivo4 photoanodes

•

electron-transfer

•

dynamics

•

exchange

•

progress

•

polarons

•

holes

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
CSEA  
Available on Infoscience
September 5, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/191953.2
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