Understanding of Electrochemical Mechanisms for CO<sub>2</sub> Capture and Conversion into Hydrocarbon Fuels in Transition-Metal Carbides (MXenes).

Li, Neng; Chen, Xingzhu; Ong, Wee-Jun; MacFarlane, Douglas R; Zhao, Xiujian; Cheetham, Anthony K; Sun, Chenghua · ACS Nano · 2017

basic_science · Level V

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Abstract

Two-dimensional (2D) transition-metal (groups IV, V, VI) carbides (MXenes) with formulas M<sub>3</sub>C<sub>2</sub> have been investigated as CO<sub>2</sub> conversion catalysts with well-resolved density functional theory calculations. While MXenes from the group IV to VI series have demonstrated an active behavior for the capture of CO<sub>2</sub>, the Cr<sub>3</sub>C<sub>2</sub> and Mo<sub>3</sub>C<sub>2</sub> MXenes exhibit the most promising CO<sub>2</sub> to CH<sub>4</sub> selective conversion capabilities. Our results predicted the formation of OCHO<sup>•</sup> and HOCO<sup>•</sup> radical species in the early hydrogenation steps through spontaneous reactions. This provides atomic level insights into the computer-aided screening for high-performance catalysts and the understanding of electrochemical mechanisms for CO<sub>2</sub> reduction to energy-rich hydrocarbon fuels, which is of fundamental significance to elucidate the elementary steps for CO<sub>2</sub> fixation.