4.8 Article

Selective Macrocycle Formation in Cavitands

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JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 143, 期 5, 页码 2190-2193

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AMER CHEMICAL SOC
DOI: 10.1021/jacs.0c12302

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  1. U.S. National Science Foundation [CHE 1801153]
  2. Program for Professor of Special Appointment (Dongfang Scholarship) of the Shanghai Education Committee

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This study utilizes cavitands to facilitate intramolecular aldol/dehydration reactions of long-chain precursors, leading to efficient macrocyclization in aqueous solution. The cavitands act as hosts for the molecular templates, resembling the role of templates in biological catalysis.
The traditional end-to-end cyclization of long-chain linear precursors is difficult and often unpredictable because the unfavorable entropy of macrocyclic closure allows undesired intermolecular reactions to compete. Here, we apply cavitands to the selective intramolecular aldol/dehydration reaction of long-chain alpha,omega-dialdehydes in aqueous solution. Hydrophobic forces drive the dialdehydes into the cavitands in folded conformations and favor macrocyclization reactions over intermolecular reactions observed in bulk solution. The macrocyclic aldol reaction products are isolated in good yields (30-85%) over a wide range (11 to 17-membered rings). Unlike conventional templates that become guests inside their assembled hosts, cavitands reverse the roles and resemble the situation in biological catalysis-the templates are hosts for guests undergoing the assisted reaction processes.

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