首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Focused Ion Beam Fabrication of LiPON-based Solid-state Lithium-ion Nanobatteries for In Situ Testing
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Focused Ion Beam Fabrication of LiPON-based Solid-state Lithium-ion Nanobatteries for In Situ Testing

机译:用于现场测试的基于LiPON的固态锂离子纳米电池的聚焦离子束制备

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摘要

Solid-state electrolytes are a promising replacement for current organic liquid electrolytes, enabling higher energy densities and improved safety of lithium-ion (Li-ion) batteries. However, a number of setbacks prevent their integration into commercial devices. The main limiting factor is due to nanoscale phenomena occurring at the electrode/electrolyte interfaces, ultimately leading to degradation of battery operation. These key problems are highly challenging to observe and characterize as these batteries contain multiple buried interfaces. One approach for direct observation of interfacial phenomena in thin film batteries is through the fabrication of electrochemically active nanobatteries by a focused ion beam (FIB). As such, a reliable technique to fabricate nanobatteries was developed and demonstrated in recent work. Herein, a detailed protocol with a step-by-step process is presented to enable the reproduction of this nanobattery fabrication process. In particular, this technique was applied to a thin film battery consisting of LiCoO2/LiPON/a-Si, and has further been previously demonstrated by in situ cycling within a transmission electron microscope.
机译:固态电解质是当前有机液体电解质的有希望的替代品,可实现更高的能量密度并改善锂离子(Li-ion)电池的安全性。但是,许多挫折阻碍了它们集成到商业设备中。主要的限制因素是由于在电极/电解质界面处发生的纳米级现象,最终导致电池运行性能下降。这些关键问题很难观察和表征,因为这些电池包含多个掩埋界面。直接观察薄膜电池中界面现象的一种方法是通过聚焦离子束(FIB)制造电化学活性纳米电池。因此,开发了一种可靠的制造纳米电池的技术,并在最近的工作中得到了证明。在此,提出了具有分步过程的详细协议,以实现该纳米电池制造过程的复制。特别地,该技术被应用于由LiCoO 2 / LiPON / a-Si组成的薄膜电池,并且先前已经通过透射电子显微镜内的原位循环进一步证明。

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