4.8 Article

Carbocation catalysis in confined space: activation of trityl chloride inside the hexameric resorcinarene capsule

期刊

CHEMICAL SCIENCE
卷 13, 期 29, 页码 8618-8625

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2sc02901d

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资金

  1. Regione Campania (POR CAMPANIA FESR 2007/2013 O.O.2.1) [CUP B46D14002660009]
  2. Centro di Tecnologie Integrate per la Salute (CITIS) [PONa3_00138]
  3. University of Salerno (FARB)

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Carbocation catalysis can take place within the confined space of the hexameric resorcinarene capsule, providing a complementary strategy. The latent strategy bypasses the issues associated with active carbocations and allows for control of reaction efficiency in terms of reaction rate, conversion, and selectivity.
Carbocation catalysis can be performed inside the confined space of the hexameric resorcinarene capsule. The inner cavity of the capsule can host the trityl carbocation, which catalyses the Diels-Alder reaction between dienes and unsaturated aldehydes. Experimental results and in silico calculations show that the hexameric resorcinarene capsule C-6 can promote the formation of the trityl carbocation from trityl chloride through the cleavage of the carbon-halogen bond promoted by OH center dot center dot center dot X- hydrogen bonding. Here it is shown that the combination of the nanoconfined space and the latent carbocation catalysis provides a convenient complementary strategy for the typical carbocation catalysis. The latent strategy bypasses the typical pitfalls associated with active carbocations and provides control of the reaction efficiency in terms of reaction rate, conversion, and selectivity.

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