Metal-CO<sub>2</sub> Batteries on the Road: CO<sub>2</sub> from Contamination Gas to Energy Source.

Xie, Zhaojun; Zhang, Xin; Zhang, Zhang; Zhou, Zhen · Adv Mater · 2017

basic_science · Level V

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Abstract

Rechargeable nonaqueous metal-air batteries attract much attention for their high theoretical energy density, especially in the last decade. However, most reported metal-air batteries are actually operated in a pure O<sub>2</sub> atmosphere, while CO<sub>2</sub> and moisture in ambient air can significantly impact the electrochemical performance of metal-O<sub>2</sub> batteries. In the study of CO<sub>2</sub> contamination on metal-O<sub>2</sub> batteries, it has been gradually found that CO<sub>2</sub> can be utilized as the reactant gas alone; namely, metal-CO<sub>2</sub> batteries can work. On the other hand, investigations on CO<sub>2</sub> fixation are in focus due to the potential threat of CO<sub>2</sub> on global climate change, especially for its steadily increasing concentration in the atmosphere. The exploitation of CO<sub>2</sub> in energy storage systems represents an alternative approach towards clean recycling and utilization of CO<sub>2</sub> . Here, the aim is to provide a timely summary of recent achievements in metal-CO<sub>2</sub> batteries, and inspire new ideas for new energy storage systems. Moreover, critical issues associated with reaction mechanisms and potential directions for future studies are discussed.