2016
Ferrocene‐Promoted Long‐Cycle Lithium–Sulfur Batteries
Mi Y, Liu W, Yang K, Jiang J, Fan Q, Weng Z, Zhong Y, Wu Z, Brudvig G, Batista V, Zhou H, Wang H. Ferrocene‐Promoted Long‐Cycle Lithium–Sulfur Batteries. Angewandte Chemie 2016, 128: 15038-15042. DOI: 10.1002/ange.201609147.Peer-Reviewed Original ResearchLithium polysulfidesEffective polysulfideCycling stabilityLong-cycle Li–S batteriesOrganometallic molecular compoundsSulfur cathode materialsSulfur electrode materialsLi-S batteriesLithium-sulfur batteriesLong‐Cycle LithiumMolecular-level interactionsCyclopentadienyl ligandSulfur batteriesElectrode materialsFerrocene moleculesCapacity decaySpectroscopic studiesMolecular compoundsSurface sitesCapacity fadePolysulfidesGraphene oxideFerroceneTheoretical calculationsBatteries
2012
Fuel selection for a regenerative organic fuel cell/flow battery: thermodynamic considerations
Araujo C, Simone D, Konezny S, Shim A, Crabtree R, Soloveichik G, Batista V. Fuel selection for a regenerative organic fuel cell/flow battery: thermodynamic considerations. Energy & Environmental Science 2012, 5: 9534-9542. DOI: 10.1039/c2ee22749e.Peer-Reviewed Original ResearchOpen circuit potentialTheoretical open circuit potentialHydrogen fuel cellsThermodynamic considerationsFlow batteriesDehydrogenation productsDehydrogenation reactionFuel cellsOrganic fuelsCircuit potentialOrganic carriersBattery systemEnergy densityHeterocyclicHydrogenationCarbocyclicBatteriesReactionHydrocarbonsFuel