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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Controlled evaporative self-assembly of polymer nanoribbons using oscillating capillary bridges
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Controlled evaporative self-assembly of polymer nanoribbons using oscillating capillary bridges

机译:使用振荡毛细管桥接控制聚合物纳米杆的蒸发自组装

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Evaporative self-assembly (ESA), based on the "coffee-ring" effect, is a versatile technique for assembling particle solutions into mesoscale patterns and structures on different substrates. ESA works with a wide variety of organic and inorganic materials, where the solution is a combination of volatile solvent and nonvolatile solute. Modified ESA methods, such as "stop-and-go flow coating," use a programmed meniscus "stick-slip" motion to create mesoscale assemblies with controlled shape, size, and architecture. However, current methods are not scalable for increased production volumes or patterning large surface areas. We demonstrate a new ESA method, where an oscillating blade controls the meniscus depinning and drives the evaporative assembly of solutes at the pinned meniscus. Results show that oscillation frequency and substrate speed control time/distance intervals between successive meniscus depinning, and the assembly dimensions depend on solution concentration, oscillation frequency, substrate speed, and meniscus height. We report the mechanism of the meniscus depinning and the control over assembly cross-sectional dimensions. This advance provides a scalable ESA method with faster processing times and maintained advantages. (c) 2018 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. 2018, 56, 1545-1551
机译:基于“咖啡环”效应的蒸发自组装(ESA)是一种多功能技术,用于将颗粒溶液组装成Mescle溶液和不同基板上的结构。 ESA适用于各种有机和无机材料,其中溶液是挥发性溶剂和非挥发性溶质的组合。改进的ESA方法,例如“停止和转移涂层”,使用编程的弯月面“粘滑”运动,以创建具有受控形状,大小和架构的Messcale组件。然而,目前的方法不可扩展,用于增加生产体积或图案化大表面区域。我们展示了一种新的ESA方法,其中振荡刀片控制弯月面脱落并驱动在固定弯月面上的溶质的蒸发组装。结果表明,连续弯月面脱落之间的振荡频率和基板速度控制时间/距离间隔,组装尺寸取决于溶液浓度,振荡频率,基板速度和弯月面高度。我们报告了弯月面拆卸的机制和对组装横截面尺寸的控制。此前提前提供一种可扩展的ESA方法,加工时间更快并保持优势。 (c)2018 Wiley期刊,Inc.J.Colom。 SCI。,B部分:聚合物。物理。 2018,56,1545-1551

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