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Increased Interfacial Area between Dielectric Layer and Electrode of Triboelectric Nanogenerator toward Robustness and Boosted Energy Output

机译:摩擦电纳米发电机的介电层和电极之间的界面面积增加从而提高了鲁棒性并提高了能量输出

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摘要

Given the operation conditions wherein mechanical wear is inevitable, modifying bulk properties of the dielectric layer of a triboelectric nanogenerator (TENG) has been highlighted to boost its energy output. However, several concerns still remain in regards to the modification due to high-cost materials and cumbersome processes being required. Herein, we report TENG with a microstructured Al electrode (TENG_ME) as a new approach to modifying bulk properties of the dielectric layer. The microstructured Al electrode is utilized as a component of TENG to increase the interfacial area between the dielectric layer and electrode. Compared to the TENG with a flat Al electrode (TENG_F), the capacitance of TENG_ME is about 1.15 times higher than that of TENG_F, and the corresponding energy outputs of a TENG_ME are 117 μA and 71 V, each of which is over 1.2 times higher than that of the TENG_F. The robustness of TENG_ME is also confirmed in the measurement of energy outputs changing after sandpaper abrasion tests, repetitive contact, and separation (more than 105 cycles). The results imply that the robustness and long-lasting performance of the TENG_ME could be enough to apply in reliable auxiliary power sources for electronic devices.
机译:考虑到不可避免的机械磨损的运行条件,已经强调了修改摩擦电纳米发电机(TENG)的介电层的整体性能以提高其能量输出。然而,由于需要高成本的材料和繁琐的过程,因此在修改方面仍然存在一些担忧。在本文中,我们报告了带有微结构化Al电极的TENG(TENG_ME),作为修改介电层整体性能的一种新方法。将微结构化的Al电极用作TENG的组成部分,以增加介电层和电极之间的界面面积。与具有扁平Al电极的TENG(TENG_F)相比,TENG_ME的电容约为TENG_F的1.15倍,TENG_ME的相应能量输出分别为117μA和71 V,分别高出1.2倍以上比TENG_F高。 TENG_ME的坚固性还可以通过测量砂纸磨损试验,反复接触和分离(超过10 5 个循环)后的能量输出变化来确定。结果表明,TENG_ME的鲁棒性和持久性能可能足以应用于电子设备的可靠辅助电源中。

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