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Dynamic Shaping of Femtoliter Dew Droplets

机译:Femtoliter露珠的动态整形

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摘要

Herein, we show that wetting properties such as giant wetting anisotropy and dynamic shaping can be observed when femtoliter (submicron scale) dew droplets are condensed on nanopatterned mildly hydrophilic surfaces. Large-scale, optically transparent, nanopatterned TiO2 surfaces were fabricated by direct nanoimprinting lithography of sol-gel-derived films. Square, infinitely elongated, or circular droplets were obtained with square, line, or concentric patterns, respectively, and were visualized in situ during formation and recession using optical microscopy and environmental scanning electronic microscopy. We first describe how extremely elongated droplets could form on mildly hydrophilic surfaces, naturally contaminated in real environmental conditions. In this configuration, the dew droplet shape can be dynamically and reversibly varied by controlling the out-of-equilibrium conditions associated with condensation/evaporation kinetics. As an example of the application, we propose a "morphological" sensor that exploits the shape of the dew droplets as a transduction mode for detecting organic vapors in the outer atmosphere. Importantly, this study is underlining that environmentally stable, purely hydrophilic surfaces can be smartly engineered to induce wetting phenomena at very small scale never observed so far for hydrophobic or heterogeneous surfaces. Our versatile approach based on nanoimprinted, transparent sol-gel films could open great perspectives for the implementation of environmentally stable, mildly hydrophilic materials for "dew engineering" applications such as open microfluidics, fuming for fingerprints, vapor sensing, or water harvesting on glass windows, for instance.
机译:在此,我们表明,当Femtoliter(亚微米)脱水液滴在纳米透明理由的温和亲水表面上凝结时,可以观察到诸如巨型润湿各向异性和动态整形的润湿性能。通过溶胶 - 凝胶衍生膜的直接纳米压印光刻来制造大规模光学透明的纳米纹状透明的TiO2表面。分别用正方形,线或同心图案获得正方形,无限伸长或圆滴,并在形成和衰退期间以光学显微镜和环境扫描电子显微镜观察原位。我们首先描述了极细长的液滴如何在轻度亲水性表面上形成,天然污染在真实的环境条件下。在这种配置中,通过控制与冷凝/蒸发动力学相关的平衡条件,可以动态地和可逆地改变露珠形状。作为应用的示例,我们提出了一种“形态学”传感器,其利用露珠的形状作为用于检测外部大气中的有机蒸汽的转导模式。重要的是,该研究强调了环境稳定的,纯粹的亲水性表面可以巧妙地设计,以在远程从未观察到疏水或异质表面的非常小的尺度下诱导润湿现象。我们的多功能方法基于纳米修印,透明溶胶 - 凝胶薄膜可以为实施“露水工程”应用的环境稳定,温和的亲水材料的实施方案,例如开放的微流体,用于指纹,蒸气传感或玻璃窗上的液体收获, 例如。

著录项

  • 来源
    《ACS nano》 |2018年第4期|共10页
  • 作者单位

    Sorbonne Univ Coll France UMR 7574 CNRS Chim Mat Condensee Paris F-75005 Paris France;

    Univ Paris Saclay Univ Paris Sud Ctr Nanosci &

    Nanotechnol Marcoussis C2N CNRS F-91460 Marcoussis France;

    Univ Paris Diderot Sorbonne Paris Cite UMR 7086 ITODYS CNRS 15 Rue JA de Baif F-75205 Paris 13 France;

    Sorbonne Univ Coll France UMR 7574 CNRS Chim Mat Condensee Paris F-75005 Paris France;

    Sorbonne Univ Coll France UMR 7574 CNRS Chim Mat Condensee Paris F-75005 Paris France;

    Univ Lyon INSA Lyon UMR CNRS 5510 Mat Ingn &

    Sci F-69621 Villeurbanne France;

    Univ Lyon INSA Lyon UMR CNRS 5510 Mat Ingn &

    Sci F-69621 Villeurbanne France;

    Fac Sci Tech IM2NP Campus St Jerome Ave Escadrille Normandie Niemen F-13397 Marseille France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    dew; condensation; shaping; hydrophilic; anisotropy; nanoimprinting;

    机译:露珠;凝结;塑造;亲水;各向异性;纳米印刷;

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