Direct catalytic hydrogenation of CO<sub>2</sub> to formate over a Schiff-base-mediated gold nanocatalyst.

Liu, Qinggang; Yang, Xiaofeng; Li, Lin; Miao, Shu; Li, Yong; Li, Yanqin; Wang, Xinkui; Huang, Yanqiang et al. · Nat Commun · 2017

basic_science · Level V

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Abstract

Catalytic transformation of CO<sub>2</sub> to formate is generally realized through bicarbonate hydrogenation in an alkaline environment, while it suffers from a thermodynamic sink due to the considerable thermodynamic stability of the bicarbonate intermediate. Here, we devise a route for the direct catalytic conversion of CO<sub>2</sub> over a Schiff-base-modified gold nanocatalyst that is comparable to the fastest known nanocatalysts, with a turnover number (TON) of up to 14,470 over 12 h at 90 °C. Theoretical calculations and spectral analysis results demonstrate that the activation of CO<sub>2</sub> can be achieved through a weakly bonded carbamate zwitterion intermediate derived from a simple Lewis base adduct of CO<sub>2</sub>. However, this can only occur with a hydrogen lacking Lewis base center in a polar solvent. This finding offers a promising avenue for the direct activation of CO<sub>2</sub> and is likely to have considerable implications in the fields of CO<sub>2</sub> conversion and gold catalytic chemistry.