用于摩擦电纳米发电机输出放大的大型驻极体制造系统的开发

IF 3.1 Q2 MATERIALS SCIENCE, COMPOSITES Functional Composites and Structures Pub Date : 2022-11-08 DOI:10.1088/2631-6331/aca138
Sunmin Jang, Sumin Cho, Donghan Lee, Yoonsang Ra, Dongik Kam, Jaehyun Lee, Gyuha Lee, Moonwoo La, D. Choi
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引用次数: 3

摘要

摩擦电纳米发电机(TENG)将机械能转换为电输出,由于其作为电源在低能量电子设备中的应用而受到关注。为了利用TENG作为电源,有必要放大电输出并提高能量转换效率。由于TENG通过接触带电和静电电荷感应产生电输出,因此可以通过扩大TENG面积和采用预电荷注入膜(驻极体)来增强这两种机制来放大电输出。在这方面,大规模驻极体的制造对于放大TENG的电输出具有重要意义。在本研究中,提出了一种电晕充电系统,用于制造具有均匀电荷分布区域的大型驻极体。电晕充电通过在引脚电极和接地电极(GE)之间产生的电场将O2离子注入介电膜中。通过在电晕充电系统中使用多PE(MPE)和传送带形状的GE(CBsGE),可以在CBsGE旋转的同时电离引脚附近的O2分子。因此,O2离子可以被均匀地注入到宽的区域中。通过将制造的驻极体施加到TENG上,可以产生大约400V的电压和45μa的电流。由于可以同时制造多个不同尺寸的驻极体,因此可以批量制造具有高电输出的TENG,从而显著提高其实用性。
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Development of large-scale electret fabrication system for triboelectric nanogenerator electrical output amplification
The triboelectric nanogenerator (TENG), which converts mechanical energy to electrical output, is garnering attention owing to their application in low-energy electronic devices as a power source. To utilize the TENG as a power source, amplifying the electrical output and enhancing energy conversion efficiency are necessary. As the TENG generates electrical output through contact electrification and electrostatic charge induction, the electrical output can be amplified by enhancing the two mechanisms through the enlargement of the TENG area and the adoption of the pre-charge injected film (electret). In this regard, the fabrication of the large-scale electret is significant for amplifying the electrical output of the TENG. In this study, a corona charging system is proposed for the fabrication of the large-scale electret with a uniform charge-distributed area. Corona charging injects O2 ions into a dielectric film with an electric field generated between the pin electrode and ground electrode (GE). Through the utilization of a multi-PE (MPE) and conveyor belt-shaped GE (CBsGE) in the corona charging system, the O2 molecules near the pins can be ionized simultaneously while the CBsGE is rotating. Thus, the O2 ions can be injected uniformly into a wide area. About a voltage of 400 V and current of 45 μA can be generated by applying the fabricated electret to the TENG. As several electrets with various sizes can be fabricated simultaneously, the TENG with high electrical output can be batch fabricated to enhance its practicality significantly.
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来源期刊
Functional Composites and Structures
Functional Composites and Structures Materials Science-Materials Science (miscellaneous)
CiteScore
4.80
自引率
10.70%
发文量
33
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