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Light-driven motion of water droplets with directional control on nanostructured surfaces

机译:Light-driven水滴的运动定向控制在纳米表面

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Discrete droplet transport has drawn much interest in a broad range of applications. Controlling the motion direction in droplet transport, however, is a long-lasting challenge. In this work, a simple yet efficient approach is demonstrated to realize the motion of droplets with directional control on nanostructured surfaces with predefined channels. Light is used as the external stimulus to induce the uneven thermal expansion of the substrate, which leads to the tilting of nanostructured channels so that the droplet is driven to move along the channel. Due to the easy manipulation of light, including both the light position and power density, this study demonstrates the controllable entrance of static water droplets into targeted channels and the simultaneous control of the motion of multiple droplets in multi-channel systems, using just one light source. Besides static droplets, this approach can also be applied for the directional control of moving droplets in multi-channel systems. As a proof-of-concept, such an approach has been utilized for efficient multiplexed reactions for chemical sensing or microreactor applications. This work offers an alternative approach for the manipulation of droplet movement in applications that involve the control of droplet motion.
机译:离散液滴交通吸引了很多兴趣在一个广泛的应用程序。然而,在液滴运动方向运输是一个长期的挑战。简单而有效的方法是证明实现液滴的运动方向控制在纳米表面预定义的渠道。外部刺激诱导热不均匀衬底的扩张,导致的纳米通道的倾斜滴,沿着通道。光的简单操作,包括光位置和功率密度,这项研究显示静态的可控的入口水滴到目标和渠道同时控制多个运动的水滴在多通道系统中,只使用一个光源。定向的方法也可以应用控制在多通道的水滴系统。已经使用了高效的多路复用化学传感或微反应器的反应应用程序。液滴运动的处理方法应用程序中涉及的控制液滴的运动。

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