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Improving Electrochemical Performances of Rechargeable Li−CO2 Batteries with an Electrolyte Redox Mediator | Semantic Scholar
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a) Structure and (b) working mechanism of a typical Li-CO/CO 2 battery. | Download Scientific Diagram
![ChemSusChem on Twitter: "Aqueous Li-CO2 #batteries with both high energy density and formic acid production were developed by Yaobing Wang and co-workers #FJIRSM https://t.co/XnoxCxKTSM https://t.co/rQYPcI3wDu" / Twitter ChemSusChem on Twitter: "Aqueous Li-CO2 #batteries with both high energy density and formic acid production were developed by Yaobing Wang and co-workers #FJIRSM https://t.co/XnoxCxKTSM https://t.co/rQYPcI3wDu" / Twitter](https://pbs.twimg.com/media/ETnEMN2UcAEF9Ih.jpg)
ChemSusChem on Twitter: "Aqueous Li-CO2 #batteries with both high energy density and formic acid production were developed by Yaobing Wang and co-workers #FJIRSM https://t.co/XnoxCxKTSM https://t.co/rQYPcI3wDu" / Twitter
A reversible lithium–CO2 battery with Ru nanoparticles as a cathode catalyst - Energy & Environmental Science (RSC Publishing)
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Chemists boost eco-friendly battery performance using catalysts with unconventional phase nanostructures
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Investigation on the Discharge and Charge Behaviors of Li-CO2 Batteries with Carbon Nanotube Electrodes,ACS Sustainable Chemistry & Engineering - X-MOL
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