TY - JOUR
T1 - Insights into substitution effects and reactivity of Lindqvist-type polyoxometalates from DFT calculations
AU - Nassar, Meriem
AU - Saal, Amar
AU - Zhou, Meijuan
AU - Springborg, Michael
N1 - Publisher Copyright:
© The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature 2023.
PY - 2023/10/17
Y1 - 2023/10/17
N2 - In this work, the geometric and electronic parameters of pure and vanadium-substituted anions of Lindqvist polyoxometalates have been investigated using DFT calculations. Active sites of all anions are identified through results on local and global reactivity descriptors. The results indicate that bridging oxygen atoms in all clusters are the most active sites. Using this, the mechanism of the catalytic generation of the hydroxyl radical from water was studied for the di-substituted Lindqvist polyoxometalate [V2Mo4O19]4−. This study provides a detailed understanding of this important intermediate step in photo-oxidation reactions. The mechanistic route makes it possible to locate transition states and intermediates structures and demonstrates that the pre-association of the water molecule leads to an H abstraction with an energy barrier of 26.42 kcal/mol and OH radical and [HV2Mo4O19]4− as products in this step.
AB - In this work, the geometric and electronic parameters of pure and vanadium-substituted anions of Lindqvist polyoxometalates have been investigated using DFT calculations. Active sites of all anions are identified through results on local and global reactivity descriptors. The results indicate that bridging oxygen atoms in all clusters are the most active sites. Using this, the mechanism of the catalytic generation of the hydroxyl radical from water was studied for the di-substituted Lindqvist polyoxometalate [V2Mo4O19]4−. This study provides a detailed understanding of this important intermediate step in photo-oxidation reactions. The mechanistic route makes it possible to locate transition states and intermediates structures and demonstrates that the pre-association of the water molecule leads to an H abstraction with an energy barrier of 26.42 kcal/mol and OH radical and [HV2Mo4O19]4− as products in this step.
KW - Catalysis
KW - Density Function Theory (DFT)
KW - Polyoxometalates (POMs)
KW - Reactivity
KW - Vanadium-substitution
UR - http://www.scopus.com/inward/record.url?scp=85174241067&partnerID=8YFLogxK
U2 - 10.1007/s11224-023-02236-7
DO - 10.1007/s11224-023-02236-7
M3 - Article
AN - SCOPUS:85174241067
SN - 1040-0400
VL - 35
SP - 885
EP - 896
JO - Structural chemistry
JF - Structural chemistry
IS - 3
ER -