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Phosphorus-Ligand Redox Cooperative Catalysis: Unraveling Four-Electron Dioxygen Reduction Pathways and Reactive Intermediates SCIE SCOPUS

Title
Phosphorus-Ligand Redox Cooperative Catalysis: Unraveling Four-Electron Dioxygen Reduction Pathways and Reactive Intermediates
Authors
KIM, SUNGGYUKIM, DONGYOUNGOH, JINROKSON, YEONGJUNKIM, SANGMINKIM, JOONGHANHWANG, SEUNG JUN
Date Issued
2024-04
Publisher
American Chemical Society
Abstract
The reduction of dioxygen to water is crucial in biology and energy technologies, but it is challenging due to the inertness of triplet oxygen and complex mechanisms. Nature leverages high-spin transition metal complexes for this, whereas main-group compounds with their singlet state and limited redox capabilities exhibit subdued reactivity. We present a novel phosphorus complex capable of four-electron dioxygen reduction, facilitated by unique phosphorus-ligand redox cooperativity. Spectroscopic and computational investigations attribute this cooperative reactivity to the unique electronic structure arising from the geometry of the phosphorus complex bestowed by the ligand. Mechanistic study via spectroscopic and kinetic experiments revealed the involvement of elusive phosphorus intermediates resembling those in metalloenzymes. Our result highlights the multielectron reactivity of phosphorus compound emerging from a carefully designed ligand platform with redox cooperativity. We anticipate that the work described expands the strategies in developing main-group catalytic reactions, especially in small molecule fixations demanding multielectron redox processes.
URI
https://oasis.postech.ac.kr/handle/2014.oak/124483
DOI
10.1021/jacs.4c01748
ISSN
0002-7863
Article Type
Article
Citation
Journal of the American Chemical Society, vol. 146, no. 16, page. 11440 - 11449, 2024-04
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