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September 23, 2025Angewandte Chemie International Edition0 citations

Unlocking DAST‐Type Reagents for Modular Synthesis of Sulfur‐Containing Motifs

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YXYiting XieTPTukang PengYMYufen Ma

Key Points

  • The methodology enables rapid access to diverse sulfur architectures through modular synthesis, enhancing drug discovery.
  • Using DAST-type reagents, the approach operates under mild conditions, facilitating late-stage functionalization of bioactive molecules.
  • Mechanistic studies reveal a highly reactive S(IV)-F intermediate, offering insights into sulfur's functional versatility.
  • This method's practicality is highlighted by its applicability to gram-scale synthesis, addressing current synthetic limitations.

Abstract

Abstract Multi‐heteroatom‐substituted sulfur centers are increasingly significant in drug discovery, yet their modular synthesis remains challenging. Current strategies employing sulfinylamines, sulfurdiimides, or SOF 4 suffer from inherent limitations. To address this, a general and practical strategy for constructing diverse sulfur centers bearing multiple oxygen or nitrogen substituents is urgently needed. Herein, we report a modular synthesis of such motifs using commercially available DAST‐type reagents as underexplored sulfur precursors. This methodology expands the utility of classical fluorination agents as sulfur sources, operates under ambient and mild conditions, and enables rapid access to diverse S(IV) and S(VI) architectures through sequential substitution and further flexible transformations. The practicality of this approach is highlighted by late‐stage functionalization of bioactive molecules and gram‐scale synthesis. Mechanistic studies support the proposed highly reactive S(IV)‐F intermediate.

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Cite This Study

Xie et al. (2025) studied this question.

synapsesocial.com/papers/68d473a631b076d99fa6c033https://doi.org/10.1002/anie.202516999
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