Yang Zhuanqing, Zhang Xi, Deng Tianjie, Xiang Gang
College of Physics, Sichuan University, Chengdu 610065, China.
ACS Appl Mater Interfaces. 2023 Oct 31. doi: 10.1021/acsami.3c13778.
Electrospun nanofiber (NF)-based triboelectric nanogenerators (TENGs) have attracted significant attention in recent years due to their high specific surface area, flexibility, and facile fabrication. However, these TENGs' triboelectric (TE) layers composed of electrospun NFs fail easily due to the poor mechanical properties and fluffy characteristics of the NFs. Herein, electropositive and electronegative TE layers based on ethylcellulose-coated nylon-11 (EC/nylon-11) NFs and polytetrafluoroethylene-coated poly(vinylidene fluoride) (PTFE/PVDF) NFs are prepared via electrospinning and postcoating processes. The obtained EC/nylon-11 and PTFE/PVDF NFs are fluffy-free and exhibit 12.26 and 20.33-fold enhancements of Young's modulus compared with those of pure nylon-11 and PVDF NFs, respectively. The optimized TENG exhibits not only superior performance, including an open-circuit voltage () of 212 V, a short-circuit current () of 18.5 μA, and a maximum power density of 1.76 W/m but also excellent electrical durability for over 100,000 cycles. The TENG's capability is further demonstrated by continuously driving electronics for over 5 min and by being integrated into a self-powered sensor array of electric skin to detect different in vitro stimuli. This work provides an effective approach to obtaining mechanically robust and electrically stable NF-based high-performance TENGs, which may have potential applications in durable, wearable, and self-powered nanoelectronics.
近年来,基于电纺纳米纤维(NF)的摩擦电纳米发电机(TENG)因其高比表面积、柔韧性和易于制造而备受关注。然而,由于NF的机械性能差和蓬松特性,这些由电纺NF组成的TENG的摩擦电(TE)层很容易失效。在此,通过静电纺丝和后涂层工艺制备了基于乙基纤维素包覆尼龙-11(EC/尼龙-11)NF和聚四氟乙烯包覆聚偏二氟乙烯(PTFE/PVDF)NF的正电和负电TE层。所获得的EC/尼龙-11和PTFE/PVDF NF没有蓬松现象,与纯尼龙-11和PVDF NF相比,杨氏模量分别提高了12.26倍和20.33倍。优化后的TENG不仅表现出优异的性能,包括212 V的开路电压()、18.5 μA的短路电流()和1.76 W/m的最大功率密度,而且还具有超过100,000次循环的优异电耐久性。通过连续驱动电子设备超过5分钟以及将其集成到电皮肤的自供电传感器阵列中以检测不同的体外刺激,进一步证明了TENG的能力。这项工作为获得机械坚固且电稳定的基于NF的高性能TENG提供了一种有效方法,这可能在耐用、可穿戴和自供电纳米电子学中具有潜在应用。