Oxophilicity as a Descriptor for NO Cleavage Efficiency over Group IX Metal Clusters

Iridium and rhodium are group IX elements that can both catalytically reduce NO. To understand the difference in their reactivity toward NO, the adsorption forms of NO onto clusters of Ir and Rh are compared using vibrational spectra, recorded via infrared multiple-photon dissociation spectroscopy....

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Veröffentlicht in:The journal of physical chemistry letters 2020-06, Vol.11 (11), p.4408-4412
Hauptverfasser: Yamaguchi, Masato, Zhang, Yufei, Kudoh, Satoshi, Koyama, Kohei, Lushchikova, Olga, Bakker, Joost M., Mafune, Fumitaka
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Sprache:eng
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Zusammenfassung:Iridium and rhodium are group IX elements that can both catalytically reduce NO. To understand the difference in their reactivity toward NO, the adsorption forms of NO onto clusters of Ir and Rh are compared using vibrational spectra, recorded via infrared multiple-photon dissociation spectroscopy. The spectra give evidence for the existence of at least two specific adsorption forms. The main Ir6+NO isomer is one in which NO is dissociated, whereas one other is a local minimum structure in the reaction pathway leading to dissociative adsorption. In contrast to adsorption onto Rh-6(+), where less than 10% of the isomeric population was found in the global minimum associated with dissociative adsorption, a substantial fraction (about 50%) of NO dissociates on Ir-6(+). This higher efficiency is attributed to a considerably reduced activation barrier for dissociation on Ir-6(+). The key chemical property identified for dissociation efficiency is the cluster's affinity to atomic oxygen.
ISSN:1948-7185
1948-7185
DOI:10.1021/acs.jpclett.0c01133