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May 31, 2026Angewandte Chemie International Edition1 citationsOpen Access

Polarity‐Directed Synthesis of an Exfoliable 2D Polyoxometalate‐Based Metal‐Organic Framework for Noble Metal‐Free Alkyne Transfer Semi‐Hydrogenation

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XDXusheng DaiHenan Normal UniversityYZY H ZhangHenan Normal UniversityYZYue ZhaoHenan Normal University

Key Points

  • To develop a method for synthesizing exfoliable 2D polyoxometalate-based metal-organic frameworks with high catalytic performance.
  • Directed assembly of H5[(Co(H2O)2)2(C18H12N6)4(P2W15Ta3O62)]·18H2O via charge distribution
  • Morphological control using hydrothermal synthesis and scalable bulk synthesis
  • Utilization of liquid-nitrogen treatment and solvent-assisted sonication for nanosheet exfoliation.
  • Bilayer nanosheets achieved high catalytic activity for alkyne transfer semi-hydrogenation, outperforming bulk and nanocrystalline materials
  • Catalytic performance rivals noble-metal-based catalysts.

Abstract

ABSTRACT Two‐dimensional polyoxometalate‐based metal–organic frameworks (2D POMOFs) hold great promise for catalysis, yet their directed synthesis and facile exfoliation remain challenging. Herein, we report the rational assembly of an exfoliable 2D POMOF, H 5 (Co(H 2 O) 2 ) 2 (C 18 H 12 N 6 ) 4 (P 2 W 15 Ta 3 O 62 )·18H 2 O ( 1 ), directed by the nonuniform charge distribution within the POM. The unique layered structure enables a multi‐step morphological control strategy: hydrothermal synthesis gives access to high‐quality single crystals, while a scalable bulk synthesis allows the rapid production of nanobelts, which can subsequently be exfoliated into ultrathin bilayer nanosheets via a liquid‐nitrogen treatment, or even monolayer nanosheets via solvent‐assisted sonication. The bilayer nanosheets exhibit high catalytic activity and selectivity for alkyne transfer semi‐hydrogenation, outperforming the corresponding bulk and nanocrystalline counterparts and rivaling noble‐metal‐based catalysts. This work establishes charge‐asymmetric POM‐directed synthesis as a viable strategy for creating defined 2D materials.

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Cite This Study

Dai et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd2375783ba022b6fda01https://doi.org/10.1002/anie.7007153
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