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May 29, 2026Beilstein Journal of Organic Chemistry0 citationsOpen Access

Synthesis and structural elucidation of a novel bis-spirooxindole from isatin and ethylenediamine

IMIrene Moreno-GutiérrezJLJosefa L. López‐MartínezSBSonia Berenguel-Gómez

Key Points

  • The aim is to explore the reactivity of isatin with ethylenediamine to synthesize new spirocyclic compounds.
  • Characterization of the bis-spirooxindole through HRMS, IR, and 1D/2D NMR analysis.
  • Structure confirmation via single-crystal X-ray diffraction.
  • Comparison of product formation at different isatin-to-diamine ratios.
  • A bis-spirooxindole was synthesized at a 1:2 isatin-to-diamine ratio, characterized using HRMS and NMR.
  • The compound was structurally confirmed by X-ray diffraction, providing insight into its unique architecture.
  • Diiminoisatin was shown to reduce independently to the same bis-spirooxindole, highlighting its synthetic versatility.

Abstract

The reactivity of isatin toward ethylenediamine displays an unexpected stoichiometric divergence, affording either the anticipated diiminoisatin or a previously unreported pentacyclic bis-spirooxindole. A 2:1 isatin-to-diamine ratio provides the diiminoisatin, whereas a 1:2 ratio leads to the formation of a highly symmetric bis-spirooxindole scaffold. The new spirocyclic product was fully characterized by HRMS, IR and extensive 1D/2D NMR analysis, and its structure was unequivocally established by single-crystal X-ray diffraction. In addition, the isolated diiminoisatin can be independently reduced to the same bis-spirooxindole. These results broaden the scope of isatin–diamine condensations and demonstrate their potential to generate structurally complex spirooxindole architectures under simple conditions.

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Cite This Study

Moreno-Gutiérrez et al. (2026) studied this question.

synapsesocial.com/papers/6a192dd1fab5b468c4416bfdhttps://doi.org/10.3762/bjoc.22.63
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