Publication | Open Access
Divergent CO<sub>2</sub> Activation by Tuning the Lewis Acid in Iron‐Based Bimetallic Systems
29
Citations
81
References
2022
Year
Bimetallic motifs mediate the selective activation and functionalization of CO<sub>2</sub> in metalloenzymes and some recent synthetic systems. In this work, we build on the nascent concept of bimetallic frustrated Lewis pairs (FLPs) to investigate the activation and reduction of CO<sub>2</sub> . Using the Fe<sup>0</sup> fragment [(depe)<sub>2</sub> Fe] (depe=1,2-bis(diethylphosphino)ethane) as base, we modify the nature of the partner Lewis acid to accomplish a divergent and highly chemoselective reactivity towards CO<sub>2</sub> . [Au(PMe<sub>2</sub> Ar)]<sup>+</sup> irreversibly dissociates CO<sub>2</sub> , Zn(C<sub>6</sub> F<sub>5</sub> )<sub>2</sub> and B(C<sub>6</sub> F<sub>5</sub> )<sub>3</sub> yield different CO<sub>2</sub> adducts stabilized by push-pull interactions, while Al(C<sub>6</sub> F<sub>5</sub> )<sub>3</sub> leads to a rare heterobimetallic C-O bond cleavage, and thus to contrasting reduced products after exposure to dihydrogen. Computational investigations provide a rationale for the divergent reactivity, while Energy Decomposition Analysis-Natural Orbital for Chemical Valence (EDA-NOCV) method substantiates the heterobimetallic bonding situation.
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