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Solid microscopic rings formed via wetting and subsequent dewetting

机译:通过润湿和随后的脱模形成纯度显微镜环

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We report the spontaneous formation of rings when a colloidal dispersion, containing silica-coated iron-oxide particles and the liquids ethanol and ethoxylated trimethylolpropane triacrylate, is deposited within micron-sized PDMS wells. Just after filling, the interface between air and the dispersion is a meniscus dictated by the dispersion's contact angle on PDMS. Upon evaporation of ethanol the meniscus lowers and, if a critical volume is reached, a rupture process is initiated and the dispersion adopts a ring morphology. The final dispersion consists only of particles and ethoxylated trimethylolpropane triacrylate that can be reticulated to solidify the ring geometry. The colloidal particles within the dispersion are essential for the stability of the rings prior to the reticulation. Here, by using iron-oxide based colloidal particles we fabricated superparamagnetic rings, opening up new avenues for applications. The dimensions of the rings can be tuned by adjusting both the size of the PDMS wells and the amount of ethanol in the dispersion. In this manner it is possible to fabricate rings with annuli smaller than a micron – a scale below the lower limit of standard lithography. Calculations assuming an equilibrium contact angle of ethoxylated trimethylolpropane triacrylate on PDMS reproduce the experimental results strikingly well.
机译:我们报告了当含有二氧化硅涂层的铁氧化物颗粒和液体乙醇和乙氧基化三羟甲基丙烷三丙烯酸盐的胶体分散体时沉积在微米尺寸的PDMS孔内时,我们报告了胶体分散体的自发形成。刚填充后,空气与分散之间的界面是通过分散的接触角在PDMS上决定的弯月面。在蒸发乙醇时,弯月球降低,如果达到临界体积,则启动破裂过程,并且色散采用环形态。最终的分散体仅由颗粒和乙氧基化三羟甲基丙烷三丙烯酸酯组成,其可以被网旋过来以固化环几何形状。分散体内的胶体颗粒对于标纹之前的环稳定性是必不可少的。这里,通过使用基于氧化铁的胶体颗粒,我​​们制作了超顺磁环,打开了用于应用的新途径。可以通过调节PDMS孔的尺寸和分散体中乙醇的量来调节环的尺寸。以这种方式,可以制造具有小于微米的载环的环 - 标准光刻下限以下的标度。假设乙氧基化三羟甲基丙烷三丙烯酸酯对PDMS上的平衡接触角进行分析再现令人惊细的实验结果。

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