Pankhurst James R, Guntern Yannick T, Mensi Mounir, Buonsanti Raffaella
Laboratory of Nanochemistry for Energy (LNCE) , Institute of Chemical Sciences and Engineering (ISIC) , École Polytechnique Fédérale de Lausanne , Rue de l'Industrie 17 , 1950 Sion , Valais , Switzerland . Email:
Institute of Chemical Sciences and Engineering (ISIC) , École Polytechnique Fédérale de Lausanne , Rue de l'Industrie 17 , 1950 Sion , Valais , Switzerland.
Chem Sci. 2019 Sep 23;10(44):10356-10365. doi: 10.1039/c9sc04439f. eCollection 2019 Nov 28.
Organic ligands are used in homogeneous catalysis to tune the metal center reactivity; in contrast, clean surfaces are usually preferred in heterogeneous catalysis. Herein, we demonstrate the potential of a molecular chemistry approach to develop efficient and selective heterogeneous catalysts in the electrochemical CO reduction reaction (CORR). We have tailor-made imidazolium ligands to promote the CORR at the surface of hybrid organic/inorganic electrode materials. We used silver nanocrystals for the inorganic component to obtain fundamental insights into the delicate tuning of the surface chemistry offered by these ligands. We reveal that modifying the electronic properties of the metal surface with anchor groups along with the solid/liquid interface with tail groups is crucial in obtaining selectivities (above 90% FE for CO), which are higher than the non-functionalized Ag nanocrystals. We also show that there is a unique dependency of the CORR selectivity on the length of the hydrocarbon tail of these ligands, offering a new way to tune the interactions between the metal surface with the electrolyte and reactants.
有机配体用于均相催化以调节金属中心的反应活性;相比之下,多相催化通常更倾向于使用洁净的表面。在此,我们展示了一种分子化学方法在电化学CO还原反应(CORR)中开发高效且选择性的多相催化剂的潜力。我们定制了咪唑鎓配体以促进在有机/无机混合电极材料表面的CORR。我们将银纳米晶体用作无机组分,以深入了解这些配体对表面化学的精细调节。我们发现,通过锚定基团改变金属表面的电子性质以及通过尾端基团改变固/液界面,对于获得高于未官能化银纳米晶体的选择性(CO的法拉第效率高于90%)至关重要。我们还表明,CORR选择性对这些配体的烃链尾部长度具有独特的依赖性,这为调节金属表面与电解质及反应物之间的相互作用提供了一种新方法。