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Recent Progress on Printed Flexible Batteries: Mechanical Challenges, Printing Technologies, and Future Prospects

机译:印刷柔性电池的最新进展:机械挑战,印刷技术和未来前景

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摘要

Traditional printing methods offer the advantage of well-matured technology, high accuracy of depositing inks over flexible substrates at high web speeds, and low cost of fabrication. The components of a batterythe current collectors, active layers, and separatorcan all be deposited using conventional printing techniques by designing suitable inks. A combination of low thickness of printed electrodes, flexible packaging, battery architecture, and material properties makes printed batteries flexible. In this paper, we will discuss material challenges and mechanical limits of flexible printed batteries. We will review several printing techniques and present examples of batteries printed using these methods. In addition, we will briefly discuss other novel non-printed compliant batteries that have unique mechanical form.
机译:传统印刷方法的优点是技术成熟,以高卷筒纸速度在柔性基材上沉积油墨的准确性高以及制造成本低。通过设计合适的油墨,可以使用常规印刷技术沉积电池的组件,集电器,活性层和隔板。印刷电极的低厚度,柔性包装,电池结构和材料特性的结合使印刷电池具有柔性。在本文中,我们将讨论柔性印刷电池的材料挑战和机械极限。我们将回顾几种打印技术,并介绍使用这些方法打印的电池示例。此外,我们将简要讨论其他具有独特机械形式的新型非印刷兼容电池。

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