Droplet‐Based Microfluidics Reveals Insights into Cross‑Coupling Mechanisms over Single‑Atom Heterogeneous Catalysts
Thomas Moragues, Georgios Giannakakis, Andrea Ruiz-Ferrando, Camelia N Borca, Thomas Huthwelker, Aram Bugaev, Andrew J deMello, Javier Pérez-Ramírez, Sharon Mitchell- General Medicine
Single‑atom heterogeneous catalysts (SACs) hold promise as sustainable alternatives to metal complexes in organic transformations. However, their working structure and dynamics remain poorly understood, hindering advances in their design. Exploiting the unique features of droplet‐based microfluidics, we present the first in‑situ assessment of a palladium SAC (PdSA@ECN) in Suzuki‑Miyaura cross‑coupling using X‐ray absorption spectroscopy. Our results confirm a surface catalyzed mechanism over PdSA@ECN, revealing the distinct electronic structure of active Pd centers compared to homogeneous systems, and providing insights into the stabilizing role of ligands and bases. This study establishes a valuable framework for advancing mechanistic understanding of organic syntheses catalyzed by SACs.