Publication | Closed Access
Three Dimensionally Ordered Mesoporous Carbon as a Stable, High‐Performance Li–O<sub>2</sub> Battery Cathode
164
Citations
33
References
2015
Year
EngineeringChemistryReversible ConversionChemical EngineeringAtomic Layer DepositionMaterials ScienceBattery Electrode MaterialsElectrochemical Power SourceAdvanced Electrode MaterialLithium-ion BatteryCarbon SurfaceEnergy StorageSolid-state BatteryElectrochemistryPorous CarbonLi-ion Battery MaterialsCathode MaterialsElectrochemical Energy StorageBatteriesAnode Materials
Enabled by the reversible conversion between Li2O2 and O2, Li-O2 batteries promise theoretical gravimetric capacities significantly greater than Li-ion batteries. The poor cycling performance, however, has greatly hindered the development of this technology. At the heart of the problem is the reactivity exhibited by the carbon cathode support under cell operation conditions. One strategy is to conceal the carbon surface from reactive intermediates. Herein, we show that long cyclability can be achieved on three dimensionally ordered mesoporous (3DOm) carbon by growing a thin layer of FeO(x) using atomic layer deposition (ALD). 3DOm carbon distinguishes itself from other carbon materials with well-defined pore structures, providing a unique material to gain insight into processes key to the operations of Li-O2 batteries. When decorated with Pd nanoparticle catalysts, the new cathode exhibits a capacity greater than 6000 mAh g(carbon) (-1) and cyclability of more than 68 cycles.
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