Rationally designed transition metal hydroxide nanosheet arrays on graphene for artificial CO<sub>2</sub> reduction.

Lu, Kang-Qiang; Li, Yue-Hua; Zhang, Fan; Qi, Ming-Yu; Chen, Xue; Tang, Zi-Rong; Yamada, Yoichi M A; Anpo, Masakazu et al. · Nat Commun · 2020

basic_science · Level V

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Abstract

The performance of transition metal hydroxides, as cocatalysts for CO<sub>2</sub> photoreduction, is significantly limited by their inherent weaknesses of poor conductivity and stacked structure. Herein, we report the rational assembly of a series of transition metal hydroxides on graphene to act as a cocatalyst ensemble for efficient CO<sub>2</sub> photoreduction. In particular, with the Ru-dye as visible light photosensitizer, hierarchical Ni(OH)<sub>2</sub> nanosheet arrays-graphene (Ni(OH)<sub>2</sub>-GR) composites exhibit superior photoactivity and selectivity, which remarkably surpass other counterparts and most of analogous hybrid photocatalyst system. The origin of such superior performance of Ni(OH)<sub>2</sub>-GR is attributed to its appropriate synergy on the enhanced adsorption of CO<sub>2</sub>, increased active sites for CO<sub>2</sub> reduction and improved charge carriers separation/transfer. This work is anticipated to spur rationally designing efficient earth-abundant transition metal hydroxides-based cocatalysts on graphene and other two-dimension platforms for artificial reduction of CO<sub>2</sub> to solar chemicals and fuels.