A Metal-free Multicomponent Strategy for Amidine Synthesis

20 January 2022, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Amidines are a ubiquitous class of bioactive compounds found in a wide variety of natural products; thus, efficient strate-gies for their preparation are in great demand. Specifically, their common structural core decorated with three substitu-ents, set amidines as perfect candidates for multicomponent synthesis. Herein, we present a highly modular metal-free multicomponent strategy for the synthesis of sulfonyl amidines. This work was focused on selecting readily accessible reagents to facilitate the in situ formation of enamines by the addition of amines to ketones. These components were coupled with azides to provide a broad reaction scope with respect to all three coupling partners. Aromatic and aliphatic amines and ketones were tolerated under our reaction conditions. Likewise, the presence of a methyl group on the ke-tone was critical to reactivity, which was leveraged for the design of a highly regioselective reaction with aliphatic ke-tones. A biologically active compound was successfully synthesized in one step, demonstrating the practical utility of our methodology. Finally, the postulated mechanism was investigated and supported both experimentally and by means of a multivariate statistical model.

Keywords

Amidine
Diversity-Oriented Synthesis (DOS)
Multi-Component Reactions (MCR)
Mechanism
Multivariate Analysis
Late-Stage Functionalization

Supplementary materials

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Description
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Supporting Information-Amidine
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Experimental details, compound characterization including 1H & 13C NMR data
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cif file (2a)
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X-ray data for 2a
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cif file (2s)
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X-ray data for 2s
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checkfile 2a
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X-ray report for 2a
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checkfile 2s
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X-ray report for 2s
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