控制物质积聚的表面的设计和应用
Abhishek Dhyani1,2, Jing Wang3, Alex Kate Halvey2,4
1Macromolecular Science and Engineering, University of Michigan-Ann Arbor, MI, USA.
概括
自然界的表面提供了对液体,固体和蒸汽积累的先进控制. 这些工程材料对于多相,多尺度应用至关重要,克服了单态驱逐表面的局限性.
科学领域:
- 材料科学
- 生物模拟学
- 表面工程
背景情况:
- 植物,昆虫和动物的自然表面通过受控的液体,固体或蒸气的积累表现出进化优势.
- 模仿这些自然现象的合成表面具有各种商业应用的巨大潜力.
- 目前的工程表面通常专注于排斥单一的物质状态或污染类型,限制了它们在现实世界中的适用性.
研究的目的:
- 讨论表面设计策略来控制不同物质状态的积累.
- 突出设计,在多个长度尺度和污染物类型中有效运行.
- 对这些先进的表面进行扩展和商业化的应用和挑战进行审查.
主要方法:
- 对表面设计策略的现有文献进行审查.
- 对自然控制增殖的例子进行分析.
- 确定扩展和商业化的主要挑战.
主要成果:
- 工程表面可以设计为控制多个相 (液体,固体,蒸汽) 和长度尺度的积累.
- 多功能表面对于各种现实应用是必不可少的,超越单一状态的驱逐设计.
- 成功扩展和商业化面临与制造复杂性和成本效益相关的障碍.
结论:
- 以自然为灵感的先进表面工程可以实现多相和多尺度的积累控制.
- 克服单态驱逐表面的局限性是广泛的商业影响的关键.
- 解决扩展和商业化挑战对于实现这些设计面的全部潜力至关重要.
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