首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-assembly of colloidal particles from evaporating droplets: Role of DLVO interactions and proposition of a phase diagram
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Self-assembly of colloidal particles from evaporating droplets: Role of DLVO interactions and proposition of a phase diagram

机译:蒸发液滴产生的胶体颗粒的自组装:DLVO相互作用的作用和相图的提出

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摘要

The shape of deposits obtained from drying drops containing colloidal particles matters for technologies such as inkjet printing, microelectronics, and bioassay manufacturing. In this work, the formation of deposits during the drying of nanoliter drops containing colloidal particles is investigated experimentally with microscopy and profilometry, and theoretically with an in-house finite-element code. The system studied involves aqueous drops containing titania nanoparticles evaporating on a glass substrate. Deposit shapes from spotted drops at. different pH values are measured using a laser profilometer. Our results show that the pH of the solution influences the dried deposit pattern, which can be ring-like or more uniform. The transition between these patterns is explained by considering how DLVO interactions such, as the electrostatic and van der Waals forces modify the particle deposition process. Also, a phase diagram is proposed to describe how the shape of a colloidal deposit results from the competition among three flow patterns: a radial flow driven by evaporation at the wetting line, a Marangoni recirculating flow driven by surface tension gradients, and the transport of particles toward the substrate driven by DLVO interactions. This phase diagram explains three types of deposits commonly observed, experimentally, such as a peripheral, ring, a small central bump, or a uniform layer. Simulations and experiments are found in very good agreement.
机译:从包含胶体颗粒的干燥液滴中获得的沉积物形状对于诸如喷墨印刷,微电子学和生物测定法制造等技术至关重要。在这项工作中,在干燥含有胶体颗粒的纳升液滴的过程中,通过显微镜和轮廓测定法对沉积物的形成进行了实验研究,并在理论上使用了内部有限元代码进行了研究。研究的系统涉及在玻璃基板上蒸发的含有二氧化钛纳米粒子的水滴。从斑点滴处沉积形状。使用激光轮廓仪测量不同的pH值。我们的结果表明,溶液的pH值会影响干燥的沉积图案,干燥的沉积图案可能呈环状或更均匀。通过考虑DLVO相互作用(例如静电力和​​范德华力)如何改变粒子沉积过程来解释这些模式之间的过渡。另外,提出了一个相图来描述胶体沉积物的形状是如何通过三种流动模式之间的竞争而产生的:在湿润线上由蒸发驱动的径向流,由表面张力梯度驱动的Marangoni再循环流以及流体的迁移。 DLVO相互作用驱动颗粒向基材移动。此相图说明了实验中通常观察到的三种沉积物,例如外围沉积物,环状沉积物,小的中心凸起或均匀的沉积物。仿真和实验非常吻合。

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