Issue 2, 2026, Issue in Progress

Influence of intramolecular interactions and transition state energetics on the strain-promoted azide–alkyne cycloaddition of 2-aminobenzenesulfonamide-containing cyclononynes

Abstract

Computational investigation of the reaction mechanism and selectivity of strain-promoted azide–alkyne cycloaddition indicated that 2-aminobenzenesulfonamide-containing cyclononyne (ABSACN) is a HOMO donor; the energy difference is slight between the transition states (TSs) for the major and minor products. The reaction between unsubstituted ABSACN(R1[double bond, length as m-dash]R2[double bond, length as m-dash]H) and benzyl azide proceeds via the pathway that is most energetically favorable, minimizing the influence of steric repulsion, intermolecular interactions, and the strain energy of ABSACN. In the case of R1[double bond, length as m-dash]Boc, the intramolecular hydrogen bond is maintained in both the X-ray-characterized minor product and its corresponding transition state, and the calculated product ratios coincided with the experimental data.

Graphical abstract: Influence of intramolecular interactions and transition state energetics on the strain-promoted azide–alkyne cycloaddition of 2-aminobenzenesulfonamide-containing cyclononynes

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Article information

Article type
Paper
Submitted
22 Aug 2025
Accepted
08 Dec 2025
First published
05 Jan 2026
This article is Open Access
Creative Commons BY license

RSC Adv., 2026,16, 1030-1037

Influence of intramolecular interactions and transition state energetics on the strain-promoted azide–alkyne cycloaddition of 2-aminobenzenesulfonamide-containing cyclononynes

K. Nakahara and K. Kaneda, RSC Adv., 2026, 16, 1030 DOI: 10.1039/D5RA06229B

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