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Performance stability and operation voltage optimization of screen-printed aqueous supercapacitors

机译:丝网印刷水性超级电容器的性能稳定性和工作电压优化

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摘要

Harvesting micropower energy from the ambient environment requires an intermediate energy storage, for which printed aqueous supercapacitors are well suited due to their low cost and environmental friendliness. In this work, a systematic study of a large set of devices is used to investigate the effect of process variability and operating voltage on the performance and stability of screen printed aqueous supercapacitors. The current collectors and active layers are printed with graphite and activated carbon inks, respectively, and aqueous NaCl used as the electrolyte. The devices are characterized through galvanostatic discharge measurements for quantitative determination of capacitance and equivalent series resistance (ESR), as well as impedance spectroscopy for a detailed study of the factors contributing to ESR. The capacitances are 200–360 mF and the ESRs 7.9–12.7 Ω, depending on the layer thicknesses. The ESR is found to be dominated by the resistance of the graphite current collectors and is compatible with applications in low-power distributed electronics. The effects of different operating voltages on the capacitance, leakage and aging rate of the supercapacitors are tested, and 1.0 V found to be the optimal choice for using the devices in energy harvesting applications.
机译:从周围环境中收集微功率能量需要中间能量存储,由于其低成本和环境友好性,因此印刷水性超级电容器非常适合于此。在这项工作中,对大量设备进行了系统的研究,以研究过程可变性和工作电压对丝网印刷水性超级电容器的性能和稳定性的影响。集电器和活性层分别用石墨和活性炭油墨印刷,并将氯化钠水溶液用作电解质。该器件的特点是通过恒流放电测量来定量确定电容和等效串联电阻(ESR),并通过阻抗光谱对导致ESR的因素进行详细研究。电容为200–360 mF,ESR为7.9–12.7Ω,具体取决于层的厚度。发现ESR受石墨集电器的电阻支配,并且与低功率分布式电子设备中的应用兼容。测试了不同工作电压对超级电容器的电容,泄漏和老化率的影响,发现1.0?V是在能量收集应用中使用该器件的最佳选择。

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