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Electrode effects of a cellulose-based electro-active paper energy harvester

机译:纤维素基电活性纸能量收集器的电极效应

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The possibility of cellulose-based electro-active paper (EAPap) as a vibrational energy transducer was investigated in this paper. Thin cellulose EAPap film specimens were prepared by the regenerating process. Three different metal electrodes of gold, silver and aluminum were deposited on a 50 x 50 mm2 cellulose film using a thermal evaporator. An aluminum cantilever beam was used as a vibrational bender and EAPap was attached close to the root of the cantilever beam. The voltage output of the EAPap was measured under harmonic base excitation of the cantilever beam. The EAPap with aluminum electrode provided the largest open circuit voltage output compared to those with gold or silver electrodes. The output voltages of the EAPap increased linearly with increase of the area of the electrodes. The output voltages also increased with increasing input acceleration but became saturated at a certain magnitude. From the experimental results, we conclude that EAPap with metal electrodes can be used as a flexible energy harvesting transducer by external mechanical stress, and the output voltage is related to the electrode material due to its work function.
机译:本文研究了纤维素基电活性纸(EAPap)作为振动能量转换器的可能性。通过再生过程制备了薄纤维素EAPap薄膜样品。使用热蒸发器将三种不同的金,银和铝金属电极沉积在50 x 50 mm2的纤维素膜上。铝悬臂梁用作振动弯曲机,并且EAPap安装在悬臂梁的根部附近。 EAPap的电压输出是在悬臂梁的谐波基激励下测量的。与金或银电极相比,带有铝电极的EAPap提供最大的开路电压输出。 EAPap的输出电压随着电极面积的增加而线性增加。输出电压也随着输入加速度的增加而增加,但在一定程度上饱和。从实验结果可以得出结论,带有金属电极的EAPap可以通过外部机械应力用作柔性能量采集换能器,并且由于其功函数,输出电压与电极材料有关。

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