Synergistic Thermal Energy and Charge Carriers in an Fe‐MOF for Solar‐Driven Scalable and Selective Aniline Production

ABSTRACT Aniline is a critical chemical feedstock for dyes, pharmaceuticals, and polymers, but its synthesis via nitroarene hydrogenation demands harsh conditions, precious metal catalysts, and incurs a substantial environmental footprint. Solar‐driven catalysis offers a sustainable alternative, but suffer from limited efficiency. Photothermal catalysis simultaneously utilize photothermal energy and charge carriers to overcome the reaction kinetics barriers, and has become a promising strategy. Here, we show that an Fe‐aminoterephthalate MOF (NM‐101) enables photothermal catalytic aniline synthesis with exceptional efficiency by synergistically coupling thermal energy and charge carrier activation. Under sunlight irradiation, NM‐101 achieves an aniline production rate of 303.13 mmol·g −1 ·h −1 with 100% selectivity and a turnover frequency (TOF) of 226.2 h −1 , surpassing all reported nonnoble metal photo(thermal)catalysts. Mechanistic studies reveal a direct hydrodeoxygenation pathway for the aniline production. In this process, photons not only provide thermal energy to drive the reaction but also generate carriers to participate in the reaction and reduce the activation barrier. When immobilized on 3D Al 2 O 3 foam, NM‐101 operates for 180 h and produces 42.2 g of aniline with a turnover number of 8470. This synergistic thermal and carriers overcomes kinetic bottlenecks in photocatalytic aniline production, demonstrating the feasibility and scalability of chemical synthesis using solar energy.

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Publication Details

Journal
Advanced Materials
Published
2026-09-05
DOI
https://doi.org/10.1002/adma.74937
Primary Topic
Advanced Photocatalysis Techniques
Type
article
Field-Weighted Citation Impact
0.00

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article

Synergistic Thermal Energy and Charge Carriers in an Fe‐MOF for Solar‐Driven Scalable and Selective Aniline Production

Rui Xiao, Jiwu Zhao, Jinlin Long, Julian A. Steele et al.
Advanced Materials
Advanced Photocatalysis Techniques
article

Synergistic Thermal Energy and Charge Carriers in an Fe‐MOF for Solar‐Driven Scalable and Selective Aniline Production

Rui Xiao, Jiwu Zhao, Jinlin Long, Julian A. Steele, Bo Weng, Haowei Huang, Lele Wang, Ran Wang, Maobin Xiao, Wenyao Cheng, Jie Hu, Weixia Zhou, Wenpeng Zhang
article en

Abstract

ABSTRACT Aniline is a critical chemical feedstock for dyes, pharmaceuticals, and polymers, but its synthesis via nitroarene hydrogenation demands harsh conditions, precious metal catalysts, and incurs a substantial environmental footprint. Solar‐driven catalysis offers a sustainable alternative, but suffer from limited efficiency. Photothermal catalysis simultaneously utilize photothermal energy and charge carriers to overcome the reaction kinetics barriers, and has become a promising strategy. Here, we show that an Fe‐aminoterephthalate MOF (NM‐101) enables photothermal catalytic aniline synthesis with exceptional efficiency by synergistically coupling thermal energy and charge carrier activation. Under sunlight irradiation, NM‐101 achieves an aniline production rate of 303.13 mmol·g −1 ·h −1 with 100% selectivity and a turnover frequency (TOF) of 226.2 h −1 , surpassing all reported nonnoble metal photo(thermal)catalysts. Mechanistic studies reveal a direct hydrodeoxygenation pathway for the aniline production. In this process, photons not only provide thermal energy to drive the reaction but also generate carriers to participate in the reaction and reduce the activation barrier. When immobilized on 3D Al 2 O 3 foam, NM‐101 operates for 180 h and produces 42.2 g of aniline with a turnover number of 8470. This synergistic thermal and carriers overcomes kinetic bottlenecks in photocatalytic aniline production, demonstrating the feasibility and scalability of chemical synthesis using solar energy.

Advanced Materials
Jiangsu University (CN), The University of Queensland (AU), Institute of Urban Environment (CN), Southeast University (CN), Fuzhou University (CN), Shaanxi Normal University (CN)
National Natural Science Foundation of China, China Postdoctoral Science Foundation, Southeast University, Australian Research Council, Fundamental Research Funds for the Central Universities
Responsible consumption and production
Openalex Percentile: Top 28%
Advanced Photocatalysis Techniques
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