Synthetic methods that provide divergent access to different product classes from the same starting materials are highly desirable in synthetic chemistry. Here, we report a switchable, catalyst- and thiol-free strategy for the controllable synthesis of thioethers and thioesters from common arenes, carboxylic acids, and tetramethylthiourea. The switchable outcome is governed by the fine-tuning of reaction conditions, which direct the reaction pathway: the in situ-generated thiophenolate anion is diverted toward either a photoinduced decarboxylative route to furnish thioethers or a direct nucleophilic substitution to yield thioesters. The reaction is scalable to gram quantities, proceeds efficiently under natural sunlight, and enables the late-stage modification of complex drug-like scaffolds, underscoring its utility in both synthetic and medicinal chemistry.
Gao et al. (2026) studied this question.
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