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The charge storage mechanism of nanostructured anhydrous and hydrous ruthenium-based oxides was evaluated by various electrochemical techniques (cyclic voltammety, hydrodynamic voltammetry, chronoamperometry, and electrochemical impedance spectroscopy). The effects of various factors, such as particle size, hydrous state, and structure, on the pseudocapacitive property were characterized. The electric...
The pseudocapacitance of nanocrystalline RuO 2 with BET surface area of 42m 2 g -1 was evaluated using a RuO 2 modified Glassy Carbon (RuO 2 /GC) thin film electrode. The charge storage behavior of the RuO 2 /GC thin film electrode was studied from fast to slow scan cyclic voltammetry between various potential windows. The utilization of the thin...
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