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Published on: October 15, 2019
Active-template CuAAC enables high-yield synthesis of (2)handcuff [2]rotaxanes
Arjun Veliyil Prakash1, Helal Metawi1, Abed Saady1
1Department of Chemistry, Bar-Ilan University, Ramat-Gan, 52900, Israel. Abed.saady@biu.ac.il.
Abstract:
An active-template CuAAC strategy enables the efficient synthesis of (2)handcuff [2]rotaxanes in high isolated yields. A bis-2,2'-bipyridine macrocycle acts as a CuI ligand that templates dual CuAAC reactions and enforces the dual-threaded handcuff architecture. This approach provides a concise and practical route to higher-order mechanically interlocked architectures.
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