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STUDY OF CURRENT COLLECTORS FOR MG BATTERIES IN MG(ALCL2ETAUVTHF ELECTROLYTE

机译:MG镁电池电池电流收集器的研究(ALCL2ETAUVTH电解质

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Advanced batteries are in great demand not only for portable electronics, but also for large scale energy storage, especially with the emergence of electric vehicles and grid energy storage. Magnesium based batteries have attracted great interest due to its high theoretical specific capacity (2200 Ah kg~(-1)) and is only 1/10 the price of Li with superior safety characteristics.Intensive research has been focused on the feasibility of rechargeable magnesium batteries, including new possible electrode materials and its Mg electrochemistry. However, challenges remain in the system due to the chemical complexity and lack of understanding of reversible deposition/dissolution of Mg, cathode hosts for Mg~(2+), electrolyte, and compatibility among them. It is well known that compatibility between the current collector and electrolyte is one of the key aspects of battery systems, especially for rechargeable batteries with long cycle life. Therefore, understanding the electrochemical behavior of current collectors and their stability in the battery system is critical for fundamental research and practical application of magnesium batteries and has received less attention to the best of our knowledge.
机译:高级电池不仅适用于便携式电子产品,还具有大规模的能量存储,尤其是电动汽车和电网储能的出现。由于其高理论特异性容量(2200 AH kg〜(-1)),镁基电池引起了极大的兴趣,并且仅为李的价格卓越的安全性。难以充电镁的可行性重点电池,包括新的可能电极材料及其Mg电化学。然而,由于化学复杂性和对Mg〜(2+),电解质和兼容性的逆转沉积/溶解的可逆沉积/溶解缺乏了解,缺乏理解,在系统中仍然存在挑战。众所周知,集电器和电解质之间的兼容性是电池系统的关键方面之一,特别是对于具有长循环寿命的可充电电池。因此,了解集电器的电化学行为及其在电池系统中的稳定性对于镁电池的基本研究和实际应用至关重要,并且对我们所知的最佳注重较少。

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