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Design of the high performance microbattery with silicene anode

机译:用硅阳极设计高性能微滴岩

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To date, lithium-ion batteries have become one of the most important energy storage devices. Creating lithium ion microbatteries using materials structured at the nanoscale allow you to create solid-state lithium-ion batteries that have the fastest electrodes. In this work, we propose the design of an element of a lithium-ion current source, which has a 10 times higher stored energy density than similar devices that are widely used at present. The developed electrochemical cell has a fully solid-state design. The active material of the anode is silicene, a solid-state electrolyte is used, the cathode is made of complex transition metal oxides, and an ultra-thin insulating pad is used. The presented element of the secondary lithium-ion battery has a theoretical capacity of 3500 mAh g~(-1) and a high charging speed. The electrochemical cell is characterized by small size, low cost of components and operational safety.
机译:迄今为止,锂离子电池已成为最重要的能量存储设备之一。使用纳米级结构的材料制造锂离子微滴式术允许您创建具有最快电极的固态锂离子电池。在这项工作中,我们提出了锂离子电流源的元件的设计,其具有比目前广泛使用的类似装置更高的储存能量密度较高的10倍。开发的电化学电池具有全固态设计。阳极的活性材料是硅,使用固态电解质,阴极由复介金属氧化物制成,并且使用超薄绝缘垫。二次锂离子电池的呈现元件具有3500mAhg〜(-1)的理论能力和高充电速度。电化学电池的特征在于尺寸小,部件成本低,操作安全性。

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