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Performance characterization of flexible printed supercapacitors

机译:柔性印刷超级电容器的性能表征

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A supercapacitor with mechanical flexibility has been fabricated, by means of simple printing technique, using carbon nanotube heterogeneous sprayed film. Our study found that the specific capacitance can reach 11 F/g by galvanostatic measurements. 600 cycles of galvanostatic measurement were performed to study stability of the flexible printed supercapacitor. Results showed a good retention of charge capacity. In addition, to reach out to a more general group of end-users, conventional DC charging and discharging tests and leakage voltage measurements were conducted to evaluate device performance. This study sheds new light on using a new class of light weight and conformable charge storage device for future printed electronics.
机译:通过简单的印刷技术,使用碳纳米管异质喷涂膜已经制造出具有机械柔韧性的超级电容器。我们的研究发现,通过恒电流测量,比电容可以达到11 F / g。进行了600次循环的恒电流测量,以研究柔性印刷超级电容器的稳定性。结果显示良好的充电容量保持率。此外,为了覆盖更广泛的最终用户群体,进行了常规的直流充电和放电测试以及泄漏电压测量,以评估设备性能。这项研究为将来的印刷电子产品使用新型轻量级和合适的电荷存储设备提供了新的思路。

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