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Suppressing Oxygen-Loss-Driven Lattice Expansion Cascades in Disordered Rock-Salt Li-Ion Cathodes via Electrolyte Engineering Click to copy article link Article link copied!
Abstract Click to copy section linkSection link copied! Disordered rock-salt (DRX) cathodes have emerged as promising candidates for low-cost, high-energy lithium-ion batteries that are free of nickel and cobalt. However, their practical use is hindered by rapid capacity and voltage degradation during cycling.
Accelerating the dissolution kinetics of iodine with a cosolvent for a high-current zinc-iodine flow battery
Accelerating the dissolution kinetics of iodine with a cosolvent for a high-current zinc-iodine flow battery Yunhe Zhao, Yang Li, Jiatao Mao, Zhibin Yi, Nauman Mubarak, Yiting Zheng, Jang-Kyo Kim and Qing Chen Abstract The high reduction potential and the abundance of iodine have prompted its use in the positive electrolytes of aqueous flow batteries, where the transition between highly soluble iodide (I-) and triiodide (I3-) may give rise to superior rate-performance.
Deciphering the exceptional kinetics of hierarchical nitrogen-doped carbon electrodes for high-performance vanadium redox flow batteries
Deciphering the exceptional kinetics of hierarchical nitrogen-doped carbon electrodes for high-performance vanadium redox flow batteries Yang Li, Shida Yang, Yunhe Zhao, Nauman Mubarak, Mengyang Xu, Muhammad Ihsan-Ul-Haq, T. S. Zhao, Qing Chen and Jang-Kyo Kim Abstract High-performance vanadium redox flow batteries (VRFBs) necessitate robust carbon electrodes, whose rational design demands quantitative relationships between the electrode properties and performance.
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