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首页> 外文期刊>Advanced Functional Materials >Electrochemical Na Insertion and Solid Electrolyte Interphase for Hard-Carbon Electrodes and Application to Na-lon Batteries
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Electrochemical Na Insertion and Solid Electrolyte Interphase for Hard-Carbon Electrodes and Application to Na-lon Batteries

机译:硬碳电极的电化学Na插入和固体电解质中间相及其在Na-lon电池中的应用

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摘要

Recently, lithium-ion batteries have been attracting more interest for use in automotive applications. Lithium resources are confirmed to be unevenly distributed in South America, and the cost of the lithium raw materials has roughly doubled from the first practical application in 1991 to the present and is increasing due to global demand for lithium-ion accumulators. Since the electrochemical equivalent and standard potential of sodium are the most advantageous after lithium, sodium based energy storage is of great interest to realize lithium-free high energy and high voltage batteries. However, to the best of our knowledge, there have been no successful reports on electrochemical sodium insertion materials for battery applications; the major challenge is the negative electrode and its passivation. In this study, we achieve high capacity and excellent reversibility sodium-insertion performance of hard-carbon and layered NaNi_(0.5)Mn_(0.5)O_2 electrodes in propylene carbonate electrolyte solutions. The structural change and passivation for hard-carbon are investigated to study the reversible sodium insertion. The 3-volt secondary Na-ion battery possessing environmental and cost friendliness, Na~+-shuttlecock hard-carbon/NaNi_(0.5)Mn_(0.5)O_2 cell, demonstrates steady cycling performance as next generation secondary batteries and an alternative to Li-ion batteries.
机译:近来,锂离子电池已经吸引了更多用于汽车应用的兴趣。锂资源在南美已确认分布不均,从1991年的首次实际应用到现在,锂原材料的成本已大约翻了一番,并且由于全球对锂离子蓄电池的需求而不断增加。由于钠的电化学当量和标准电势是仅次于锂的最有利的,因此钠基储能器对于实现无锂的高能和高压电池具有重大意义。然而,据我们所知,还没有关于电池用电化学钠插入材料的成功报道。主要挑战是负极及其钝化。在这项研究中,我们获得了在碳酸亚丙酯电解液中的硬碳电极和多层NaNi_(0.5)Mn_(0.5)O_2电极的高容量和出色的可逆钠插入性能。研究了硬碳的结构变化和钝化,以研究可逆钠的插入。具有环保和成本优势的3伏二次Na离子二次电池,Na〜+ ttle子硬碳/NaNi_(0.5)Mn_(0.5)O_2电池,表现出稳定的循环性能,是下一代二次电池和Li-的替代品离子电池。

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  • 来源
    《Advanced Functional Materials》 |2011年第20期|p.3859-3867|共9页
  • 作者单位

    Department of Applied Chemistry Tokyo University of Science 1-3 Kagurazaka, Shinjuku, Tokyo 162-8601, Japan;

    Department of Applied Chemistry Tokyo University of Science 1-3 Kagurazaka, Shinjuku, Tokyo 162-8601, Japan;

    Department of Applied Chemistry Tokyo University of Science 1-3 Kagurazaka, Shinjuku, Tokyo 162-8601, Japan;

    Department of Applied Chemistry Tokyo University of Science 1-3 Kagurazaka, Shinjuku, Tokyo 162-8601, Japan;

    Department of Applied Chemistry Tokyo University of Science 1-3 Kagurazaka, Shinjuku, Tokyo 162-8601, Japan;

    Department of Applied Chemistry Tokyo University of Science 1-3 Kagurazaka, Shinjuku, Tokyo 162-8601, Japan;

    Department of Applied Chemistry Tokyo University of Science 1-3 Kagurazaka, Shinjuku, Tokyo 162-8601, Japan;

    Department of Chemistry Okayama University 3-1-1 Tsushima-naka, Kita, Okayama 700-8530, Japan;

    Department of Chemistry Okayama University 3-1-1 Tsushima-naka, Kita, Okayama 700-8530, Japan;

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