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June 4, 2026Organometallics0 citations

Bis-Guanidinate Aluminum Complexes: Synthesis and Catalytic Application in Three-Component Aminophosphorylation of Aldehydes

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SPSmrutirani PadhanSRSagrika RajputSMSayantan Mukhopadhyay

Key Points

  • This study aims to synthesize and evaluate the catalytic performance of bis-guanidinate aluminum complexes in aminophosphorylation reactions.
  • Synthesis of bis-guanidinate aluminum complexes using deprotonation and salt-metathesis methods.
  • Characterization via spectroscopic methods and single-crystal XRD analysis.
  • Catalytic performance tested in the three-component aminophosphorylation reaction under solvent-free conditions.
  • Complex 2 (LAlMe(OTf)) demonstrated superior catalytic activity, producing a variety of α-aminophosphonates in high yields.
  • The catalytic process operates effectively under mild conditions with low catalyst loadings.
  • A plausible catalytic cycle was proposed based on literature and mass spectrometric analysis of a key intermediate.

Abstract

We report a series of bis-guanidinate-supported aluminum complexes, LAlMeCl (1), LAlMe (OTf) (2), LAlCl2 (3), and LAlEtCl (4) L = (ArNH) (ArN) -C═N–C═ (NAr) (NHAr) ; Ar = 2, 6-Et2-C6H3, prepared via deprotonation and salt-metathesis strategies and characterized by standard spectroscopic methods and single-crystal XRD analysis. The catalytic performance of complexes 1–4 was investigated in the three-component aminophosphorylation (Kabachnik–Fields type) reaction. Among them, complex 2 displayed superior activity, affording a wide range of α-aminophosphonates in high yields under mild, solvent-free conditions and at low catalyst loadings. Based on literature precedents and the characterization of the key intermediate via mass spectrometric analysis, a plausible catalytic cycle was proposed. These results highlight the potential of bis-guanidinate-supported aluminum triflate complex (2) as an effective and sustainable catalyst for multicomponent C–P and C–N bond-forming reactions.

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Cite This Study

Padhan et al. (2026) studied this question.

synapsesocial.com/papers/6a21164cd499ed480b16f2e8https://doi.org/10.1021/acs.organomet.6c00090
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