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March 16, 2026ACS Applied Nano Materials0 citations

Phosphazene-Covalent Organic Framework-Encapsulated Palladium Nanocubes as a Robust Catalyst for Suzuki, Heck, and Sonogashira Cross-Coupling Reactions

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SSS. SaranyaSVSeenuvasan Vedachalam

Key Points

  • The study aims to develop a sustainable nanocatalyst using phosphazene-based covalent organic frameworks to improve catalytic activity in cross-coupling reactions.
  • Synthesis of a phosphazene-based covalent organic framework (P-COF) to encapsulate palladium salt (Pd(OAc)2)
  • Characterization of the Pd@P-COF nanocatalyst using TEM, SEM-EDX, TGA, XPS, PXRD, BET, and FTIR
  • Evaluation of catalytic performance in Suzuki, Heck, and Sonogashira cross-coupling reactions under mild conditions
  • Assessment of the recyclability of the nanocatalyst
  • Pd@P-COF shows excellent catalytic performance with high yields for all cross-coupling reactions tested
  • The nanocatalyst exhibits good tolerance to various functional groups and substrates
  • No significant loss in catalytic activity was noted during recyclability tests
  • The P-COF structure enhances metal site distribution and stability

Abstract

In this work, we exploited the notable advantages of using phosphazene-based covalent organic frameworks (P-COF) as supports for highly distributed and utilization of active palladium metal sites, exhibiting excellent catalytic performance. Here, we present a sustainable heterogeneous nanocatalyst consisting of a P-COF encapsulated with palladium salt (Pd(OAc)2) for cross-coupling reactions, such as Suzuki–Miyaura, Mizoroki–Heck, and Sonogashira reactions. The electron-rich heteroatoms (P, N) within the P-COF framework effectively anchor the active sites (Pd), and this demonstrates an excellent catalytic performance and cyclic stability in cross-coupling reactions. Various characterization techniques, such as TEM, SEM-EDX, TGA, XPS, PXRD, BET, and FTIR analysis, were used to characterize the synthesized Pd-incorporated P-COF (Pd@P-COF) as a nanocatalyst. As a result, this sustainable catalyst exhibits a good to excellent yield for all the cross-coupling reactions under mild conditions, and it has excellent tolerance to the functional groups and wide substrates bearing electronic diversity at low catalyst loading. Furthermore, the recovered nanocatalyst of Pd@P-COF was subjected to recyclability, which shows there is no remarkable loss in its catalytic activity. This work highlights the importance of rational P-COF skeleton design in developing efficient catalytic systems and highlights the promising potential of Pd@P-COF in sustainable catalysis, with minimal loss of metal centers from the P-COF.

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Cite This Study

Saranya et al. (2026) studied this question.

synapsesocial.com/papers/69b79e398166e15b153ab36fhttps://doi.org/10.1021/acsanm.6c00692
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