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Aprotic Li−O2 batteries have attracted extensive attention in the past decade owing to their high theoretical energy density; however, they are obstructed by the sluggish reaction kinetics at the cathode and large voltage hysteresis. We regulate the spin state of partial Ni2+ metal centers (t2g6eg2) of conductive nickel catecholate framework (NiII‐NCF) nanowire arrays to high‐valence Ni3+ (t2g6eg1...
Aprotic Li−O2 batteries have attracted extensive attention in the past decade owing to their high theoretical energy density; however, they are obstructed by the sluggish reaction kinetics at the cathode and large voltage hysteresis. We regulate the spin state of partial Ni2+ metal centers (t2g6eg2) of conductive nickel catecholate framework (NiII‐NCF) nanowire arrays to high‐valence Ni3+ (t2g6eg1...
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