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首页> 外文期刊>ACS nano >Taming Self-Organization Dynamics to Dramatically Control Porous Architectures
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Taming Self-Organization Dynamics to Dramatically Control Porous Architectures

机译:驯服自组织动力学以戏剧性地控制多孔结构

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We demonstrate templating of functional materials with unexpected and intricate micro- and nanostructures by controlling the condensation, packing, and evaporation of water droplets on a polymer solution. Spontaneous evaporation of a polymer solution induces cooling of the liquid surface and water microdroplet condensation from the ambient vapor. These droplets pack together and act as a template to imprint an entangled polymer film. This breath figure (BF) phenomenon is an example of self-organization that involves the long-range ordering of droplets. Equilibrium-based analysis provides many insights into contact angles and drop stability of individual drops, but the BF phenomenon remains poorly understood thus far, preventing translation to real applications. Here we investigate the dynamics of this phenomenon to separate out the competing influences and then introduce a modulation scheme to ultimately manipulate the water vapor liquid equilibrium independently from the solvent evaporation. This approach to BF control provides insights into the mechanism, a rationale for microstructure design, and evidence for the benefits of dynamical control of self-organization systems. We finally present dramatically different porous architectures from this approach reminiscent of microscale Petri dishes, conical flasks, and test tubes.
机译:我们通过控制水滴在聚合物溶液上的缩合,堆积和蒸发,展示了具有意想不到的复杂的微观和纳米结构的功能材料的模板。聚合物溶液的自发蒸发会引起液体表面的冷却和环境蒸气中的水微滴凝结。这些小滴堆积在一起,并充当模板以印制缠结的聚合物薄膜。这种呼吸图(BF)现象是自我组织的一个示例,其中涉及液滴的远距离排序。基于平衡的分析提供了许多关于单个液滴的接触角和液滴稳定性的见解,但到目前为止,BF现象仍然知之甚少,因此无法转换为实际应用。在这里,我们研究了这种现象的动力学,以分离出相互竞争的影响,然后介绍了一种调制方案,以最终独立于溶剂蒸发来最终控制水蒸气液体平衡。高炉控制的这种方法提供了对该机理的见解,微观结构设计的原理以及自组织系统动态控制的好处的证据。我们最终提出了与这种方法截然不同的多孔结构,让人联想到微型皮氏培养皿,锥形瓶和试管。

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