首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Control of Droplet Evaporation on Oil-Coated Surfaces for the Synthesis of Asymmetric Supraparticles
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Control of Droplet Evaporation on Oil-Coated Surfaces for the Synthesis of Asymmetric Supraparticles

机译:对油涂层表面的液滴蒸发的控制,用于合成不对称上浆粒子

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Controlling the droplet evaporation on surfaces is desired to get uniform depositions of materials in many applications, for example, in two- and three-dimensional printing and biosensors. To explore a new route to control droplet evaporation on surfaces and produce asymmetric particles, sessile droplets of aqueous dispersions were allowed to evaporate from surfaces coated with oil films. Here, we applied 1-50 mu m thick films of different silicone oils. Two contact lines were observed during droplet evaporation: an apparent liquid-liquid-air contact line and liquid-liquid-solid contact line. Because of the oil meniscus covering part of the rim of the drop, evaporation at the periphery is suppressed. Consequently, the droplet evaporates mainly in the central region of the liquid-air interface rather than at the droplet's edge. Colloidal particles migrate with the generated upward flow inside the droplet and are captured by the receding liquid-air interface. A uniform deposition ultimately forms on the substrate. With this straightforward approach, asymmetric supraparticles have been successfully fabricated independent of particle species.
机译:期望控制表面上的液滴蒸发,以使许多应用中的材料均匀沉积,例如,在两维印刷和生物传感器中。为了探讨在表面上控制液滴蒸发的新途径并产生不对称颗粒,允许水分散体的术术液滴从涂有油膜的表面蒸发。在这里,我们应用了1-50亩厚的不同硅油薄膜。在液滴蒸发过程中观察到两个接触线:表观液 - 液 - 空气接触线和液体 - 固体接触线。由于覆盖下降边缘的一部分的油弯月面,因此抑制了周边的蒸发。因此,液滴主要蒸发主要在液体 - 空气界面的中心区域而不是在液滴边缘。胶体颗粒与液滴内部的产生的向上流动迁移,并被后退的液体空气接口捕获。均匀沉积最终形成在基板上。利用这种直接的方法,不对称的上前粒子已经成功地造成颗粒物种。

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