Homede Ekhlas, Zigelman Anna, Abezgauz Ludmila, Manor Ofer
Wolfson Department of Chemical Engineering , Technion-Israel Institute of Technology , Haifa , Israel 32000.
J Phys Chem Lett. 2018 Sep 20;9(18):5226-5232. doi: 10.1021/acs.jpclett.8b02052. Epub 2018 Aug 30.
We evaporate aqueous suspensions in a microchamber to explore the connection between the morphology of the nanoparticle deposits at nanometer resolutions and at micrometer and hundreds of micrometers resolutions. Repulsive or weakly attractive electrical double-layer and van der Waals surface forces render the deposition of detached particles and small aggregates at nanometer resolutions. However, strongly attractive surface forces render the dense deposition of large aggregates. At greater length resolutions, the deposit morphology is further governed by evaporation-mediated transport of particles in the volatile suspension. We use experiment and theory to show that the contributions of the different mechanisms to the deposit morphology are mediated by particle coagulation and by particle adsorption to the substrate. The nanometer deposit morphology and particle transport render the morphology of the deposits at greater length resolutions, where it may take the shape of crude or smooth particulate micropatterns or continuous particulate coating layers.
我们在微腔中蒸发水性悬浮液,以探索纳米分辨率以及微米和数百微米分辨率下纳米颗粒沉积物形态之间的联系。排斥性或弱吸引力的电双层和范德华表面力使得分离的颗粒和小聚集体在纳米分辨率下沉积。然而,强吸引力的表面力使得大聚集体密集沉积。在更大的长度分辨率下,沉积物形态进一步受挥发性悬浮液中颗粒的蒸发介导传输控制。我们通过实验和理论表明,不同机制对沉积物形态的贡献由颗粒凝聚和颗粒对基底的吸附介导。纳米级沉积物形态和颗粒传输决定了更大长度分辨率下沉积物的形态,其可能呈现粗糙或光滑的颗粒微图案形状或连续的颗粒涂层。