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◆ Chem2026-03-19· Electrochemistry

Electrochemical self-optimization for the synthesis of densely functionalized molecules

Eduardo Rial-Rodríguez, Florian L. Wagner, Thomas Fuchß, Alena Sommer, Johannes Krieger, Hans‐Michael Eggenweiler, C. Oliver Kappe, Gabriele Laudadio

原始摘要(英文原文)· Original abstract
The implementation of closed-loop automation in electrochemistry has been limited by engineering and chemical difficulties, especially when applied to the synthesis of densely functionalized molecules. To overcome these issues, we developed a modular autonomous platform integrating Bayesian optimization and online analysis. The versatility of the system was demonstrated in three different case studies, including a nickel-catalyzed C–N cross-coupling, an anodic modification of an amino acid, and a decarboxylative alkylation of a natural product. These reactions were optimized by considering a broad range of chemical inputs, translated into different continuous and categorical variables, toward the optimization of single or multiple objectives. Furthermore, the automation of anodic reactions was achieved by implementing a gas release module. Finally, the desired products were isolated by translating the slug conditions into continuous flow.
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