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Paper | Open Access

Hierarchically ordered porous carbon with atomically dispersed cobalt for oxidative esterification of furfural

Wen YaoaChenghong HuaYajie ZhangbHao Lia Fengliang WangaKui Shena Liyu Chena ( )Yingwei Lia ( )
School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510640, P.R. China
State Key Laboratory of Applied Organic Chemistry and Electron Microscopy Centre of Lanzhou University, Lanzhou University, Lanzhou, 730000, P.R. China
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Abstract

Nitrogen-rich zeolitic imidazolate frameworks (ZIFs) are ideal precursors for the synthesis of metal single atoms anchored on N-doped carbon. However, the microporous structures of conventional ZIFs lead to low mass transfer efficiency and low metal utilization of their derivatives. Here, we construct a composite of Co single atoms anchored on nitrogen-doped carbon with a three-dimensional ordered macroporous structure (Co-SA/3DOM-NC) by two-step pyrolysis of ordered macro/microporous ZnCo-ZIF. Co-SA/3DOM-NC shows high activity in the oxidative esterification of furfural, achieving a 99% yield of methyl 2-furoate under mild reaction conditions, which is significantly superior to the microporous and the Co-nanoparticle counterparts. The high activity of Co-SA/3DOM-NC should be attributed to the CoN4 centers with high intrinsic activity and the ordered macroporous structure, promoting the mass transfer of reactants and accessibility of active sites.

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Industrial Chemistry & Materials
Pages 106-116

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Cite this article:
Yao W, Hu C, Zhang Y, et al. Hierarchically ordered porous carbon with atomically dispersed cobalt for oxidative esterification of furfural. Industrial Chemistry & Materials, 2023, 1(1): 106-116. https://doi.org/10.1039/d2im00045h

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Received: 14 November 2022
Accepted: 19 December 2022
Published: 19 December 2022
© 2023 The Author(s). Co‐published by the Institute of Process Engineering, Chinese Academy of Sciences and the Royal Society of Chemistry

This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence.