Highly Efficient Iron-Based Catalyst for Light-Driven Selective Hydrogenation of Nitroarenes

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Author(s)
Ma, Jun
Mao, Xin
Hu, Canyu
Wang, Xinyu
Gong, Wanbing
Liu, Dong
Long, Ran
Du, Aijun
Zhao, Huijun
Xiong, Yujie
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2023
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Abstract

Light-driven hydrogenation of nitro compounds to functionalized amines is of great importance yet a challenge for practical applications, which calls for the development of high-performance, nonprecious photocatalysts and efficient catalytic systems. Herein, we report a high-efficiency Fe3O4@TiO2 photocatalyst via a sol–gel and subsequent pyrolysis strategy, which exhibits desirable photothermal hydrogenation performance of nitro compounds to functionalized amines with the excellent selectivity of >90% exceeding those of the state-of-the-art heterogeneous photocatalysts. Our experimental results and theoretical calculations for the first time reveal that Fe3O4 is the major active phase, and the strong metal–support interaction between Fe3O4 and reducible TiO2 further leads to performance improvement, taking advantage of the enhanced photothermal effect and the improved adsorption for the reactant and hydrazine hydrate. Notably, a variety of halonitrobenzenes and pharmaceutical intermediates can be completely converted to functionalized amines with high selectivities, even in gram-scale reactions. This work provides a new insight into the rational design of nonprecious photo/thermo-catalysts for other catalytic reactions.

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Journal of the American Chemical Society

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This publication has been entered in Griffith Research Online as an advanced online version.

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Analytical chemistry

Chemical sciences

Engineering

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Ma, J; Mao, X; Hu, C; Wang, X; Gong, W; Liu, D; Long, R; Du, A; Zhao, H; Xiong, Y, Highly Efficient Iron-Based Catalyst for Light-Driven Selective Hydrogenation of Nitroarenes, Journal of the American Chemical Society, 2023

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