Among many challenges present in Li–air batteries, one of the main reasons of low efficiency is the high charge overpotential due to the slow oxygen evolution reaction (OER). Here, we present systematic evaluation of Pt, Pd, and Ru nanoparticles supported on rGO as OER electrocatalysts in Li–air cell cathodes with LiCF<sub>3</sub>SO<sub>3</sub>–tetra(ethylene glycol) dimethyl ether (TEGDME) salt-electrolyte system. All of the noble metals explored could lower the charge overpotentials, and among them, Ru-rGO hybrids exhibited the most stable cycling performance and the lowest charge overpotentials. Role of Ru nanoparticles in boosting oxidation kinetics of the discharge products were investigated. Apparent behavior of Ru nanoparticles was ...
Beyond a traditional view that metal nanoparticles formed upon electrochemical reaction are inactive...
Ru nanoparticles deposited on a conductive support indium tin oxide (Ru/ITO) were applied as a carbo...
Rechargeable lithium-air batteries have the potential to provide ≈3 times higher specific energy of ...
Ruthenium-based nanomaterials supported on reduced graphene oxide (rGO) have been investigated as ai...
In lithium–oxygen (Li–O<sub>2</sub>) batteries, nanocatalysts have been widely employed as a means t...
Fundamental research on Li–O2 batteries remains critical, and the nature of the reactions and stabil...
Fundamental research on Li-O2 batteries remains critical, and the nature of the reactions and stabil...
Low electrical efficiency for the lithium–oxygen (Li–O<sub>2</sub>) electrochemical reaction is one ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
Most Li-O-2 batteries suffer from sluggish kinetics during oxygen evolution reactions (OERs). To ove...
PtAu nanoparticles (NPs) were shown to strongly enhance the kinetics of the oxygen reduction reactio...
© 2016 Elsevier B.V. Lithium oxygen batteries have attracted much attention due to the high theoreti...
© The Royal Society of Chemistry. Carbon-free, hierarchical Ru nanospheres are reported as an effect...
Fundamental research on Li–O2 batteries remains critical, and the nature of the reactions and stabil...
Lithium-oxygen (Li-O-2) batteries have attracted tremendous attention due to their high specific ene...
Beyond a traditional view that metal nanoparticles formed upon electrochemical reaction are inactive...
Ru nanoparticles deposited on a conductive support indium tin oxide (Ru/ITO) were applied as a carbo...
Rechargeable lithium-air batteries have the potential to provide ≈3 times higher specific energy of ...
Ruthenium-based nanomaterials supported on reduced graphene oxide (rGO) have been investigated as ai...
In lithium–oxygen (Li–O<sub>2</sub>) batteries, nanocatalysts have been widely employed as a means t...
Fundamental research on Li–O2 batteries remains critical, and the nature of the reactions and stabil...
Fundamental research on Li-O2 batteries remains critical, and the nature of the reactions and stabil...
Low electrical efficiency for the lithium–oxygen (Li–O<sub>2</sub>) electrochemical reaction is one ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
Most Li-O-2 batteries suffer from sluggish kinetics during oxygen evolution reactions (OERs). To ove...
PtAu nanoparticles (NPs) were shown to strongly enhance the kinetics of the oxygen reduction reactio...
© 2016 Elsevier B.V. Lithium oxygen batteries have attracted much attention due to the high theoreti...
© The Royal Society of Chemistry. Carbon-free, hierarchical Ru nanospheres are reported as an effect...
Fundamental research on Li–O2 batteries remains critical, and the nature of the reactions and stabil...
Lithium-oxygen (Li-O-2) batteries have attracted tremendous attention due to their high specific ene...
Beyond a traditional view that metal nanoparticles formed upon electrochemical reaction are inactive...
Ru nanoparticles deposited on a conductive support indium tin oxide (Ru/ITO) were applied as a carbo...
Rechargeable lithium-air batteries have the potential to provide ≈3 times higher specific energy of ...