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Cross-Linked Cyclodextrins Bimetallic Nanocatalysts: Applications in Microwave-Assisted Reductive Aminations
E. Calcio Gaudino, E. Acciardo, S. Tabasso, M. Manzoli, G. Cravotto, RS. Varma,
Language English Country Switzerland
Document type Journal Article
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- MeSH
- Amination MeSH
- Amines chemistry MeSH
- Benzaldehydes chemistry MeSH
- beta-Cyclodextrins chemistry MeSH
- Cyclodextrins chemistry MeSH
- Catalysis MeSH
- Metals chemistry MeSH
- Copper chemistry MeSH
- Microwaves * MeSH
- Nanoparticles chemistry MeSH
- Palladium chemistry MeSH
- Cross-Linking Reagents chemistry MeSH
- Publication type
- Journal Article MeSH
The optimization of sustainable protocols for reductive amination has been a lingering challenge in green synthesis. In this context, a comparative study of different metal-loaded cross-linked cyclodextrins (CDs) were examined for the microwave (MW)-assisted reductive amination of aldehydes and ketones using either H2 or formic acid as a hydrogen source. The Pd/Cu heterogeneous nanocatalyst based on Pd (II) and Cu (I) salts embedded in a β-CD network was the most efficient in terms of yield and selectivity attained. In addition, the polymeric cross-linking avoided metal leaching, thus enhancing the process sustainability; good yields were realized using benzylamine under H2. These interesting findings were then applied to the MW-assisted one-pot synthesis of secondary amines via a tandem reductive amination of benzaldehyde with nitroaromatics under H2 pressure. The formation of a CuxPdy alloy under reaction conditions was discerned, and a synergic effect due to the cooperation between Cu and Pd has been hypothesized. During the reaction, the system worked as a bifunctional nanocatalyst wherein the Pd sites facilitate the reduction of nitro compounds, while the Cu species promote the subsequent imine hydrogenation affording structurally diverse secondary amines with high yields.
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