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首页> 外文期刊>Nature Communications >Robust self-cleaning and micromanipulation capabilities of gecko spatulae and their bio-mimics
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Robust self-cleaning and micromanipulation capabilities of gecko spatulae and their bio-mimics

机译:壁虎刮​​刀及其生物模拟物具有强大的自清洁和显微操作能力

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摘要

Geckos have the extraordinary ability to prevent their sticky feet from fouling while running on dusty walls and ceilings. Understanding gecko adhesion and self-cleaning mechanisms is essential for elucidating animal behaviours and rationally designing gecko-inspired devices. Here we report a unique self-cleaning mechanism possessed by the nano-pads of gecko spatulae. The difference between the velocity-dependent particle-wall adhesion and the velocity-independent spatula-particle dynamic response leads to a robust self-cleaning capability, allowing geckos to efficiently dislodge dirt during their locomotion. Emulating this natural design, we fabricate artificial spatulae and micromanipulators that show similar effects, and that provide a new way to manipulate micro-objects. By simply tuning the pull-off velocity, our gecko-inspired micromanipulators, made of synthetic microfibers with graphene-decorated micro-pads, can easily pick up, transport, and drop-off microparticles for precise assembling. This work should open the door to the development of novel self-cleaning adhesives, smart surfaces, microelectromechanical systems, biomedical devices, and more.
机译:壁虎具有出色的能力,可以防止在尘土飞扬的墙壁和天花板上行驶时粘滞脚弄脏。了解壁虎的附着力和自我清洁机制对于阐明动物行为和合理设计壁虎启发的设备至关重要。在这里,我们报告壁虎刮刀的纳米垫具有的独特的自清洁机制。取决于速度的颗粒壁粘附力和取决于速度的铲刀-颗粒动力响应之间的差异导致强大的自清洁能力,从而使壁虎能够在运动过程中有效地清除污垢。为了模仿这种自然设计,我们制造出了具有类似效果的人造刮铲和微型操纵器,并提供了操纵微型物体的新方法。通过简单地调节拉出速度,我们的壁虎启发式微操纵器(由合成超细纤维和石墨烯修饰的微垫制成)可以轻松地拾取,运输和释放微粒,以进行精确组装。这项工作应为新型自清洁粘合剂,智能表面,微机电系统,生物医学设备等的开发打开大门。

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