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Scaling Printable Zn–Ag_2O Batteries for Integrated Electronics

机译:缩放用于集成电子的可打印Zn–Ag_2O电池

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摘要

Printed batteries are an emerging solution for integrated energy storage using low-cost, high accuracy fabrication techniques. While several printed batteries have been previously shown, few have designed a battery that can be incorporated into an integrated device. Specifically, a fully printed battery with a small active electrode area (1 cm(2)) achieving high areal capacities (10 mAh cm(-2)) at high current densities (1-10 mA cm(-2)) has not been demonstrated, which represents the minimum form-factor and performance requirements for many low-power device applications. This work addresses these challenges by investigating the scaling limits of a fully printed Zn-Ag2O battery and determining the electrochemical limitations for a mm(2)-scale battery. Processed entirely in air, Zn-Ag2O batteries are well suited for integration in typical semiconductor packaging flows compared to lithium-based chemistries. Printed cells with electrodes as small as 1 mm(2) maintain steady operating voltages above (1.4 V) at high current densities (1-12 mA cm(-2)) and achieve the highest reported areal capacity for a fully printed battery at 11 mAh cm(-2). The findings represent the first demonstration of a small, packaged, fully printed Zn-Ag2O battery with high areal capacities at high current densities, a crucial step toward realizing chip-scale energy storage for integrated electronic systems.
机译:印刷电池是使用低成本,高精度制造技术的集成储能技术的新兴解决方案。尽管先前已经显示了几种印刷电池,但是很少有人设计出可以集成到集成设备中的电池。具体而言,具有小有源电极面积(<1 cm(2))的全印制电池具有在高电流密度(1-10 mA cm(-2))下实现高面积容量(> 10 mAh cm(-2))的特性。未进行演示,这代表了许多低功耗设备应用的最小外形尺寸和性能要求。这项工作通过研究完全印刷的Zn-Ag2O电池的比例极限并确定mm(2)比例电池的电化学极限来解决这些挑战。与基于锂的化学物质相比,Zn-Ag2O电池完全在空气中进行处理,非常适合集成在典型的半导体封装流程中。电极小至1 mm(2)的印制电池在高电流密度(1-12 mA cm(-2))时可保持高于(> 1.4 V)的稳定工作电压,并在完全印制的电池下达到报告的最大面容量11 mAh厘米(-2)。这些发现代表了一个小型的,完全印刷的,全印刷的Zn-Ag2O电池的首次展示,该电池在高电流密度下具有较高的面容量,这是实现集成电子系统芯片级储能的关键一步。

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