Sun Jianfeng, Zhang Lingjun, Gong Siqi, Chen Jie, Guo Hengyu
Chongqing Key Laboratory of Soft Condensed Matter Physics and Smart Materials, College of Physics, Chongqing University, Chongqing, 400044, China.
Department of Physics, College of Basic Medical Sciences, Army Medical University, Chongqing, 400038, China.
Adv Mater. 2023 Nov;35(44):e2305578. doi: 10.1002/adma.202305578. Epub 2023 Sep 22.
Electronically controlled droplet manipulation has widespread applications in biochemistry, life sciences, and industry. However, current technologies such as electrowetting, electrostatics, and surface charge printing rely on complex electrode arrays and external power supplies, leading to inefficient manipulation. In light of these limitations, a novel method is proposed, which leverages tribo-electrophoresis (TEP) to pipette in an oil medium, thereby enabling human-droplet interactions to be constructed with greater efficiency. The approach involves the rational design of a triboelectric nanogenerator-electrostatic tweezer that generates an electric field to charge the droplet and improves the maneuverability of the charged droplet, including aligned/non-aligned pipetting and stable transport in the clamped state, which can be accomplished solely by hand motion. The TEP method not only provides droplets with freedom to move in three dimensions but also offers a feasibility case for chemical reactions in the liquid phase and non-invasive sample extraction. This breakthrough establishes a cornerstone for human-droplet interactions capitalized on triboelectric nanogenerators, opening new avenues for research in droplet manipulation.
电控液滴操纵在生物化学、生命科学和工业领域有着广泛的应用。然而,诸如电润湿、静电和表面电荷印刷等当前技术依赖于复杂的电极阵列和外部电源,导致操纵效率低下。鉴于这些局限性,提出了一种新颖的方法,该方法利用摩擦电泳(TEP)在油介质中进行移液操作,从而能够更高效地构建人与液滴之间的相互作用。该方法涉及合理设计摩擦纳米发电机 - 静电镊子,其产生电场使液滴带电,并提高带电液滴的可操纵性,包括对齐/不对齐移液以及在夹持状态下的稳定运输,这仅通过手动操作即可完成。TEP方法不仅为液滴提供了在三维空间中移动的自由度,还为液相中的化学反应和非侵入性样品提取提供了一个可行的案例。这一突破为基于摩擦纳米发电机的人与液滴相互作用奠定了基石,为液滴操纵研究开辟了新途径。