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Robust superhydrophilic patterning of superhydrophobic ormosil surfaces for high-throughput on-chip screening applications

机译:用于高通量片上筛选应用的超疏水性Ormosil表面的鲁棒的超嗜含量图案化

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This article describes a facile method for the preparation of two-dimensionally patterned superhydrophobic hybrid coatings with controlled wettability. Superhydrophobic coatings were deposited from nanostructured organically modified silica (ormosil) colloids that were synthesized via a simple sol–gel method. On the defined areas of the superhydrophobic ormosil coatings, stable wetted micropatterns were produced using Ultraviolet/Ozone (UV/O) treatment which modifies the surface chemistry from hydrophobic to hydrophilic without changing the surface morphology. The degree of wettability can be precisely controlled depending on the UV/O exposure duration; extremely wetted spots with water contact angle (WCA) of nearly 0° can be obtained. Furthermore, we demonstrated high-throughput biomolecular adsorption and mixing using the superhydrophilic patterns. The proposed superhydrophilic-patterned nanostructured ormosil surfaces with their simple preparation, robust and controlled wettability as well as adaptability on flexible substrates, hold great potential for biomedical and chemical on-chip analysis.
机译:本文介绍了一种用于制备具有受控润湿性的二维图案化超疏水杂合涂层的容易方法。通过简单的溶胶 - 凝胶法合成的纳米结构有机化的二氧化硅(Ormosil)胶体沉积超疏水涂层。在超疏水性或墨西尔涂层的定义区域上,使用紫外/臭氧(UV / O)处理产生稳定的湿润的微图案,该处理将表面化学从疏水性改变为亲水性而不改变表面形态。可以根据UV / O暴露持续时间精确控制润湿性程度;可以获得具有近0°的带有水接触角(WCA)的极其湿润的斑点。此外,我们证明了使用超硫酸化图案的高通量生物分子吸附和混合。所提出的超硫酸型纳米结构纳米结构的纳米肌肉表面具有简单的制备,稳健和控制的润湿性以及对柔性基材的适应性,对生物医学和化学片上分析具有很大的潜力。

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