Tornar a resultats destacats 2024

Electric fields as “smart reagents”

Puigmartí Luis, Josep (UB)

Experimental Sciences & Mathematics

Electric fields act as “smart reagents”, triggering and accelerating chemical reactions with precision. While studies on electric-field catalysis focus on single molecules, scaling and reactant transport are often overlooked. Our research uses a large electrode surface to study electrostatic catalysis of Huisgen cycloaddition, comparing it to traditional copper-based methods. With a custom microfluidic reactor, we optimize reactant delivery and showcase a scalable, clean platform for electric-field-driven chemical processes.

The image shows a schematic representation of oriented external electric-field (OEEF) in an electrostatic catalysis (top panel), and copper (Cu+)-catalyzed click cycloaddition (bottom panel) in a confined microfluidic channel between two gold electrodes. The azide moiety (1) is immobilized on the gold surface via thiol-gold chemistry, and the ferrocene alkyne derivative (2) is flowed continuously to avoid its depletion on the functionalized gold surface. b, c Schematic drawing showing parts of the microfluidic cell prior to its assembly (in panel b) and the assembled microfluidic cell with a section-cut in the top part to demonstrate the confined reaction area formed between two gold electrodes using a spacer (in panel c).


REFERÈNCIA

- Sevim S, Sanchis-Gual R, Franco C, et al. 2024, 'Electrostatic Catalysis of a Click Reaction in a Microfluidic Cell'Nat. Commun, 15, 1, 790.