

		<div>
            2022-12-15        </div>
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		<strong>News:</strong>
			The development of chiral catalysts plays a very important role in various areas of chemical science. Heterogeneous catalysts have the general advantage of allowing a more straightforward separation from the products. One specific case of heterogeneous catalysis is electrocatalysis, being potentially a green chemistry approach. However, a typical drawback is that the redox conversion of molecules occurs only at the electrode/electrolyte interface, and not in the bulk of the electrolyte. The second limitation is that the electrodes have to be physically connected to a power supply to induce the desired reactions. To circumvent these problems, we propose here a complementary approach by replacing macroscopic electrodes with an ensemble of self-propelled redox active microswimmers. They move autonomously in solution while transforming simultaneously a prochiral starting compound into a specific enantiomer with a very high enantiomeric excess, accompanied by a significantly increased production rate of the favorite enantiomer.<br>

<strong>S. Arnaboldi, G. Salinas, G. Bonetti, P. Garrigue, R. Cirilli, T. Benincori, A. Kuhn</strong> <br>

<a href="https://onlinelibrary.wiley.com/doi/abs/10.1002/anie.202209098"><em>Angew.Chem.Int.Ed.</em> 61 (<strong>2022</strong>) e202209098</a> <br>

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			<strong>Laboratory :</strong>
            ISM        </div>
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            <a target=_blank href=' https://doi.org/10.1002/anie.202209098'> https://doi.org/10.1002/anie.202209098</a>        </div>
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