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Designing self-propelled, chemically active sheets: Wrappers, flappers, and creepers

机译:设计自推进式化学活性薄板:包装纸,挡板和爬山虎

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Catalyst-coated, hard particles can spontaneously generate fluid flows, which, in turn, propel the particles through the fluid. If the catalyst-coated object were a deformable sheet, then the self-generated flows could affect not only the sheet’s motion but also its shape. By developing models that capture the interrelated chemical, hydrodynamic, and mechanical interactions, we uncover novel behavior emerging from the previously unstudied coupling between active, soft sheets and the surrounding fluid. The chemically generated flows “sculpt” the sheet into various forms that yield different functionalities, which can be tailored by modifying the sheet’s geometry, patterning the sheet’s surface with different catalysts, and using cascades of chemical reactions. These studies reveal how to achieve both spatial and temporal controls over the position and shape of active sheets and thus use the layers to autonomously and controllably trap soft objects, perform logic operations, and execute multistage processes in fluid-filled microchambers.
机译:涂覆有催化剂的硬质颗粒会自发产生流体流,进而推动颗粒通过流体。如果涂覆有催化剂的物体是可变形的薄片,那么自生流动不仅会影响薄片的运动,还会影响薄片的形状。通过开发捕获相互关联的化学,流体动力学和机械相互作用的模型,我们发现了以前从未研究过的活性,软片与周围流体之间的耦合所产生的新颖行为。化学产生的流将板“雕刻”成各种形式,从而产生不同的功能,可以通过修改板的几何形状,使用不同的催化剂对板的表面进行图案化以及使用级联的化学反应进行定制。这些研究揭示了如何实现对活动薄片的位置和形状的空间和时间控制,从而利用这些层自主地和可控制地捕获软物体,执行逻辑运算以及在充满流体的微腔室中执行多级过程。

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