Feng Min, Kong Xiang, Feng Yange, Li Xiaojuan, Luo Ning, Zhang Liqiang, Du Changhe, Wang Daoai
State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, P. R. China.
Center of Materials Sciences and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Small. 2022 May;18(21):e2201442. doi: 10.1002/smll.202201442. Epub 2022 Apr 29.
Intelligent and highly precise control of liquid-solid triboelectricity is of great significance for energy collection and electrostatic prevention. However, most of the traditional methods are irreversible and complex, greatly limiting their applicability. Here, a reversible thermosensitive liquid-solid triboelectric nanogenerator (L-S TENG) is assembled based on P(NIPAM-MMA) (PNM) copolymer for tunable triboelectrification. Through temperature regulation, the conformation between acylamino and isopropyl groups changes with the interfacial wettability and triboelectricity of PNM. When the temperature rises from 20 to 60 °C, the contact angle of PNM rises from 22.49° to 82.08°, and the output of the PNM-based L-S TENG shows a 27-fold increase. In addition, this transformation is reversible and repeatable with excellent durability for up to 60 days. Other organic liquids, such as glycol, exhibit positive response to temperature for this PNM-based L-S TENG. Polymers including polymethylmethacrylic, polytetrafluoroethylene, and polyimide are verified to not have such thermo-sensitivity properties. In addition, a droplet-based wireless warning system based on PNM is designed and actuated for monitoring specific temperature. The introduction of thermal PNM not only provides new material for reversible manipulation of L-S TENG, but also provides a new method for designing highly sensitive temperature warning sensors.
对液固摩擦起电进行智能且高度精确的控制对于能量收集和静电防护具有重要意义。然而,大多数传统方法都是不可逆且复杂的,这极大地限制了它们的适用性。在此,基于聚(N-异丙基丙烯酰胺-甲基丙烯酸甲酯)(PNM)共聚物组装了一种可逆热敏液固摩擦纳米发电机(L-S TENG),用于实现可调节的摩擦起电。通过温度调节,PNM中酰胺基和异丙基之间的构象会随着界面润湿性和摩擦起电性能而变化。当温度从20℃升至60℃时,PNM的接触角从22.49°升至82.08°,基于PNM的L-S TENG的输出增加了27倍。此外,这种转变是可逆且可重复的,具有长达60天的优异耐久性。其他有机液体,如乙二醇,对基于PNM的L-S TENG表现出对温度的正响应。包括聚甲基丙烯酸甲酯、聚四氟乙烯和聚酰亚胺在内的聚合物经证实不具有这种热敏感特性。此外,还设计并启动了基于PNM的液滴式无线预警系统,用于监测特定温度。热响应性PNM的引入不仅为L-S TENG的可逆操控提供了新材料,也为设计高灵敏度温度预警传感器提供了新方法。