Bio-inspired asymmetric Zn-N2O2 single-atom catalysts via natural skeleton for efficient N-alkylation of nitroarenes with alcohols

Y Yu Huang Y Yan Li X Xiaogang Yin Q Qiudi Zhu M Mei He X Xueqin Chang X Xuefei Liu (School of Physics and Electronic Science) W Wu Li (Leibniz-Institut für Katalyse) A Aiwen Lei (The Institute for Advanced Studies (IAS)) X Xianglin Pei

Abstract

Abstract Although significant developments are made in non-noble metal catalysts for N-alkylation of nitroarenes with alcohols via borrowing hydrogen strategy, obtaining catalysts with superior activity, reusability and broad substrate scope under mild reaction conditions remains challenging. Single-atom catalysts (SACs) hold unique coordination/electron structures, to be the potential candidates for this reaction. In this study, we firstly and creatively fabricate bio-inspired Zn SACs with asymmetric Zn-N 2 O 2 sites by utilizing the natural skeleton of biomass chitosan (denoted as Zn/CS), and achieve the first instance of heterogeneous Zn SACs in borrowing hydrogen reaction between nitroarenes and alcohols. The results reveal that the asymmetric Zn-N 2 O 2 sites induced by natural skeleton (like ligands) and nanoporous structure of Zn/CS significantly promote the N-alkylation efficiency of nitroarenes with alcohols. Notably, the Zn/CS exhibits the highest turnover frequency (TOF) among the reported heterogeneous catalysts, as well as wide substrate scope (56 examples) and excellent reusability. Furthermore, the catalytic pathway/mechanism is investigated by combing theoretical calculations, which reveals that the asymmetric Zn-N 2 O 2 sites with electron-deficient character can facilitate the formation of Zn-H and Zn-O bonds between Zn/CS and Ph-CH 2 O − , thus easily generating the transition state Ph-CH 2 O* and driving the whole reaction.

Article Details

Volume / Issue Vol. 17, Issue 1
Published March 05, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

Y

Yu Huang

Y

Yan Li

X

Xiaogang Yin

Q

Qiudi Zhu

M

Mei He

X

Xueqin Chang

X

Xuefei Liu

School of Physics and Electronic Science

W

Wu Li

Leibniz-Institut für Katalyse

A

Aiwen Lei

The Institute for Advanced Studies (IAS)

X

Xianglin Pei