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Unprecedentedly high activity and selectivity for hydrogenation of nitroarenes with single atomic Co1-N3P1 sites.

Authors :
Jin, Hongqiang
Li, Peipei
Cui, Peixin
Shi, Jinan
Zhou, Wu
Yu, Xiaohu
Song, Weiguo
Cao, Changyan
Source :
Nature Communications; 11/8/2022, Vol. 13 Issue 1, p1-9, 9p
Publication Year :
2022

Abstract

Transition metal single atom catalysts (SACs) with M<subscript>1</subscript>-N<subscript>x</subscript> coordination configuration have shown outstanding activity and selectivity for hydrogenation of nitroarenes. Modulating the atomic coordination structure has emerged as a promising strategy to further improve the catalytic performance. Herein, we report an atomic Co<subscript>1</subscript>/NPC catalyst with unsymmetrical single Co<subscript>1</subscript>-N<subscript>3</subscript>P<subscript>1</subscript> sites that displays unprecedentedly high activity and chemoselectivity for hydrogenation of functionalized nitroarenes. Compared to the most popular Co<subscript>1</subscript>-N<subscript>4</subscript> coordination, the electron density of Co atom in Co<subscript>1</subscript>-N<subscript>3</subscript>P<subscript>1</subscript> is increased, which is more favorable for H<subscript>2</subscript> dissociation as verified by kinetic isotope effect and density functional theory calculation results. In nitrobenzene hydrogenation reaction, the as-synthesized Co<subscript>1</subscript>-N<subscript>3</subscript>P<subscript>1</subscript> SAC exhibits a turnover frequency of 6560 h<superscript>−1</superscript>, which is 60-fold higher than that of Co<subscript>1</subscript>-N<subscript>4</subscript> SAC and one order of magnitude higher than the state-of-the-art M<subscript>1</subscript>-N<subscript>x</subscript>-C SACs in literatures. Furthermore, Co<subscript>1</subscript>-N<subscript>3</subscript>P<subscript>1</subscript> SAC shows superior selectivity (>99%) toward many substituted nitroarenes with co-existence of other sensitive reducible groups. This work is an excellent example of relationship between catalytic performance and the coordination environment of SACs, and offers a potential practical catalyst for aromatic amine synthesis by hydrogenation of nitroarenes. Modulating the atomic coordination structure has emerged as a promising strategy to further improve catalytic performance. Here, the authors report an atomic Co1/NPC catalyst with unsymmetrical single Co1N3P1 sites that displays high activity and chemoselectivity for hydrogenation of functionalized nitroarenes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
13
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
160074915
Full Text :
https://doi.org/10.1038/s41467-022-28367-9