Kwak Min Sub, Lim Kyung-Won, Lee Ha Young, Peddigari Mahesh, Jang Jongmoon, Jeong Chang Kyu, Ryu Jungho, Yoon Woon-Ha, Yi Sam Nyung, Hwang Geon-Tae
Department of Electronic Materials Engineering, Korea Maritime and Ocean University (KMOU), Busan 49112, Republic of Korea and Korea institute of Materials Science (KIMS), Changwon, Gyengnam 51508, Republic of Korea.
Korea institute of Materials Science (KIMS), Changwon, Gyengnam 51508, Republic of Korea.
Nanoscale. 2021 May 13;13(18):8418-8424. doi: 10.1039/d1nr01336j.
In this paper, we demonstrated a multiscale micro- and nano-structured magneto-mechano-triboelectric nanogenerator (MMTENG) enabled by a salt particle imprinting process to power an internet of thing (IoT) sensor. The fine salt particles were utilized to form a multiscale structure on a triboelectric polymer film by mechanical pressure via an eco-friendly, low-cost, and simple process, thereby reinforcing the contact triboelectrification and electrostatic induction. The surface modified MMTENG can generate an open-circuit peak-to-peak voltage of 851 V, a short-circuit current of 155 μA, and a maximum peak power of 10.3 mW under an AC magnetic field of 8 Oe. The energy device also presented output stability over 124 million operating cycles. Finally, the electricity of the surface enhanced MMTENG device was directly utilized to power an IoT temperature sensor with integration of an energy harvester, energy conversion circuit, and storage capacitor.
在本文中,我们展示了一种通过盐颗粒压印工艺实现的多尺度微纳结构磁机械摩擦电纳米发电机(MMTENG),用于为物联网(IoT)传感器供电。通过环保、低成本且简单的工艺,利用机械压力使细盐颗粒在摩擦电聚合物薄膜上形成多尺度结构,从而增强接触摩擦起电和静电感应。表面改性的MMTENG在8 Oe的交流磁场下可产生851 V的开路峰峰值电压、155 μA的短路电流以及10.3 mW的最大峰值功率。该能量装置在超过1.24亿次的工作循环中也表现出输出稳定性。最后,表面增强的MMTENG装置所产生的电力被直接用于为集成了能量收集器、能量转换电路和存储电容器的物联网温度传感器供电。