A Self-Powered, Soft, and Multifunctional Triboelectric-Electrohydrodynamic Pump
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Soft pumps have the potential to transform industries including soft robotics, wearable devices, microfluidics and biomedical devices, but their efficiency and power supply limitations hinder prolonged operation. Here, we report a novel self-powered triboelectric-electrohydrodynamic (TEHD) pump, which combines a soft electrohydrodynamic pump driven by an electrostatic generator, specifically a triboelectric nanogenerator. The triboelectric nanogenerator collects ambient energy and converts it into high-voltage power source, allowing it to self-power an electrohydrodynamic pump and thus eliminating the need for external power supply. Using power management circuit, geometric shape optimization, and stacking methods, we achieved a maximum pressure of 4.49 kPa and a maximum flow rate of 502 mL/min. We demonstrate the pump’s versatility in applications such as self-powered soft actuators, oil pumping in microfluidics, and oil purification. The TEHD pump holds promising applications, and offers new insights for the development of fully self-powered systems.




