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聚合物薄膜在水面上的即时形成。

On-the-Fly Formation of Polymer Film at Water Surface.

作者信息

Vespini Veronica, Coppola Sara, Ferraro Pietro

机构信息

Institute of Applied Sciences and Intelligent Systems "E. Caianiello", National Research Council (CNR-ISASI), Via Campi Flegrei 34, 80078 Pozzuoli, NA, Italy.

出版信息

Polymers (Basel). 2022 Aug 8;14(15):3228. doi: 10.3390/polym14153228.

Abstract

The self-propulsion of bodies floating in water is of great interest for developing new robotic and intelligent systems at different scales, and whenever possible, Marangoni propulsion is an attractive candidate for the locomotion of untethered micro-robots. Significant cases have been shown using liquid and solid surfactants that allow an effective propulsion for bodies floating on water to be achieved. Here, we show for the first time a strategy for activating a twofold functionality where the self-propulsion of a floating body is combined with the formation of a polymer thin film at the water surface. In fact, we demonstrate that by using polymer droplets with an appropriate concentration of solvent and delivering such drops at specific locations onto freely floating objects, it is possible to form "on-the-fly" thin polymer films at the free water surface. By exploiting self-propulsion, a polymer thin film can be formed that could cover quite extensive areas with different shapes depending on the motion of the floating object. This intriguing twice-functionality activated though a single phenomenon, i.e., film formation and related locomotion, could be used in perspective to perform complex operations at water surfaces, such as dynamic liquid packaging, cleaning, and moving away floating particles, monolayer films, or macro-sized objects, as discussed in the text.

摘要

漂浮在水中的物体的自推进对于开发不同尺度的新型机器人和智能系统具有重要意义,并且只要有可能,马兰戈尼推进就是无束缚微型机器人运动的一个有吸引力的选择。已经有大量案例表明,使用液体和固体表面活性剂能够实现漂浮在水上的物体的有效推进。在此,我们首次展示了一种激活双重功能的策略,即将漂浮物体的自推进与在水面形成聚合物薄膜相结合。事实上,我们证明,通过使用具有适当溶剂浓度的聚合物液滴,并将这些液滴在特定位置滴加到自由漂浮的物体上,就有可能在自由水面“即时”形成聚合物薄膜。通过利用自推进,能够形成聚合物薄膜,根据漂浮物体的运动,该薄膜可以覆盖形状各异的相当大的区域。通过单一现象(即薄膜形成和相关运动)激活的这种有趣的双重功能,从长远来看可用于在水面执行复杂操作,如动态液体包装、清洁以及清除漂浮颗粒、单层薄膜或宏观物体,正如本文所讨论的那样。

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