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May 28, 2026Inorganic Chemistry0 citations

Donor–Acceptor–Donor Type Diimidazole-Based Metal–Organic Framework for Photocatalytic C–O and C–C Bond Formation

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KWKun WuDGDi GuoJHJia-Yu Huang

Key Points

  • The study aims to develop an efficient and recyclable photocatalyst for solar-driven organic synthesis using a robust metal-organic framework.
  • Synthesis of a hafnium-based metal-organic framework (JNU-228) utilizing a D–A–D ligand (PBIT).
  • Characterization of the framework's structural integrity, visible-light absorption, and catalytic activity.
  • Evaluation of catalytic performance in hydroxylation and trifluoromethylation under visible-light irradiation.
  • JNU-228 showed efficient photocatalytic activity for hydroxylation of arylboronic acids and trifluoromethylation of coumarins and indoles.
  • Maintained structural integrity and high activity over multiple catalytic cycles, indicating robustness.
  • Enhanced visible-light absorption and appropriate band gap values contribute to its effective photocatalysis.

Abstract

The development of robust, efficient, and recyclable heterogeneous photocatalysts for solar-driven organic synthesis remains a significant challenge. Herein, we report the synthesis of a robust hafnium-based metal–organic framework, JNU-228, by using a donor–acceptor–donor (D–A–D) ligand, 4,4′,4″,4‴-(1,4-phenylenebis(1H-imidazole-2,4,5-triyl))tetrabenzoate (PBIT). The integration of photoactive triphenylimidazole units with Hf6-oxo clusters endows JNU-228 with enhanced visible-light absorption and a suitable band gap. Under visible-light irradiation, JNU-228 efficiently catalyzes the hydroxylation of arylboronic acids and the trifluoromethylation of coumarins and indoles. Moreover, JNU-228 maintains its structural integrity and catalytic activity over multiple cycles. This work demonstrates that incorporating molecular D–A–D photosensitizers into stable MOF matrices is a powerful strategy for developing superior heterogeneous photocatalysts for sustainable organic transformations.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/6a17dcbb3fad632b0f9d9671https://doi.org/10.1021/acs.inorgchem.6c01838
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