School of Physics, Chongqing Key Laboratory of Soft Condensed Matter Physics and Smart Materials, Chongqing University, Chongqing, 400044, P. R. China.
Adv Mater. 2023 Feb;35(7):e2209657. doi: 10.1002/adma.202209657. Epub 2022 Dec 18.
To enhance the durability of triboelectric nanogenerator (TENG), liquid lubrication has been used to reduce mechanical abrasion. However, as the charge transportation behavior in dielectric liquid is not clearly understood, the output energy is still low although some improvements have been reported. Herein, the charge transportation behaviors in dielectric liquid by self-excited liquid suspension triboelectric nanogenerator (LS-TENG) are systematically investigated. The important role of solid-liquid triboelectrification effect, charge-liquid transmission and dissipation effect, and the homogeneous dielectric induction effect in promoting its output performance is found. The LS-TENG with a dual dielectric tribolayer has advantages of slight driving force and long lifetime for harvesting micro energy. The output of LS-TENG remains almost constant for more than 234 k operating cycles. A high charge density of 704 µC m is obtained, 2.7 times as much as that of the current highest record in non-contact TENG. Additionally, the rotary LS-TENG lights up 4200 LEDs and continuously powers a variety of wireless sensors by harvesting wind energy at low wind speed. This work provides an important insight toward the charge transportation mechanism in dielectric liquid, and a prospective strategy for achieving highly robust TENG in micro energy harvesting for practical applications.
为了提高摩擦纳米发电机(TENG)的耐久性,人们采用液体润滑来减少机械磨损。然而,由于人们对介电液中的电荷输运行为还没有清楚的了解,尽管已有一些改进措施被报道,但输出能量仍然很低。在此,通过自激式液体悬浮摩擦纳米发电机(LS-TENG)系统地研究了介电液中的电荷输运行为。发现固-液摩擦起电效应、电荷-液传输和耗散效应以及均匀介电感应效应对提高其输出性能起着重要作用。具有双介电摩擦层的 LS-TENG 具有驱动力小和使用寿命长的优点,可用于采集微能量。LS-TENG 的输出在超过 234 k 个工作循环后几乎保持不变。获得了 704 µC m 的高电荷密度,是目前非接触式 TENG 中最高记录的 2.7 倍。此外,旋转式 LS-TENG 可以点亮 4200 个 LED 灯,并通过在低风速下收集风能,为各种无线传感器提供持续的动力。这项工作为介电液中的电荷输运机制提供了重要的见解,并为实现微能源收集的高稳健性 TENG 提供了有前景的策略,可应用于实际。