College of Physics, Qingdao University, 266071, Qingdao, China.
School of Pharmacy, Qingdao University, 266071, Qingdao, China.
Nat Commun. 2022 Sep 9;13(1):5316. doi: 10.1038/s41467-022-33086-2.
Solid nanogenerators often have limited charge transfer due to their low contact area. Liquid-liquid nanogenerators can transfer a charge better than the solid-solid and solid-liquid counterparts. However, the precise manipulation of the liquid morphology remains a challenge because of the fluidity limits of the liquid. In this work, using the surface tension of a droplet to fix its shape, a liquid-liquid triboelectric nanogenerator in Contact-Separation mode is designed using an immiscible aqueous-aqueous interface, achieving a contact surface charge transfer of 129 nC for a single droplet. The configuration is proven to be applicable in humid environments, and the two-phase materials have good biocompatibility and can be used as an effective drug carrier. Therefore, this nanogenerator is useful for designing future implantable devices. Meanwhile, this design also establishes the foundation of aqueous electronics, and additional applications can be achieved using this route.
固态纳米发电机由于其低接触面积,电荷转移通常受到限制。相比之下,液-液纳米发电机的电荷转移性能优于固-固和固-液纳米发电机。然而,由于液体的流动性限制,精确控制液体形态仍然是一个挑战。在这项工作中,利用液滴的表面张力来固定其形状,设计了一种采用不混溶的水-水界面的接触-分离模式的液-液摩擦纳米发电机,实现了单个液滴的接触表面电荷转移为 129 nC。该结构被证明适用于潮湿环境,两相材料具有良好的生物相容性,可用作有效的药物载体。因此,这种纳米发电机可用于设计未来的植入式设备。同时,这种设计也为水系电子学奠定了基础,通过这种途径可以实现更多的应用。