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The microstructure matters: breaking down the barriers with single crystalline silicon as negative electrode in Li-ion batteries

机译:微观结构很重要:用单晶硅作为锂离子电池的负极打破势垒

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摘要

Silicon-based microelectronics forms a major foundation of our modern society. Small lithium-ion batteries act as the key enablers of its success and have revolutionised portable electronics used in our all everyday’s life. While large-scale LIBs are expected to help establish electric vehicles, on the other end of device size chip-integrated Si-based μ-batteries may revolutionise microelectronics once more. In general, Si is regarded as one of the white hopes since it offers energy densities being ten times higher than conventional anode materials. The use of monocrystalline, wafer-grade Si, however, requires several hurdles to be overcome since it its volume largely expands during lithiation. Here, we will show how 3D patterned Si wafers, prepared by the sophisticated techniques from semiconductor industry, are to be electrochemically activated to overcome these limitations and to leverage their full potential being reflected in stable charge capacities (>1000 mAhg–1) and high Coulomb efficiencies (98.8%).
机译:硅基微电子学构成了我们现代社会的主要基础。小型锂离子电池是其成功的关键,并彻底改变了我们日常生活中使用的便携式电子设备。大型LIB有望帮助建立电动汽车,但在器件尺寸的另一端,芯片集成的硅基μ电池可能会再次掀起微电子学的革命。通常,Si被认为是白色的希望之一,因为它提供的能量密度是传统阳极材料的十倍。然而,单晶晶圆级硅的使用需要克服几个障碍,因为其体积在锂化过程中会大大扩展。在这里,我们将展示如何通过半导体工业的先进技术制备的3D图案化Si晶片进行电化学活化,以克服这些限制并充分利用其在稳定的充电容量(> 1000 mAhg –1 )和高库仑效率(98.8%)。

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