Renewable Materials and Nanotechnology Research Group, Department of Chemical Engineering , KU Leuven , Campus Kulak Kortrijk, Etienne Sabbelaan 53 , 8500 Kortrijk , Belgium.
Forschungszentrum Jülich, Institute of Complex Systems (ICS-3) , 52425 Jülich , Germany.
Biomacromolecules. 2018 Aug 13;19(8):3233-3243. doi: 10.1021/acs.biomac.8b00493. Epub 2018 Jun 28.
One of the most important aspects in controlling colloidal deposition is manipulating the homogeneity of the deposit by avoiding the coffee-ring effect caused by capillary flow inside the droplet during drying. After our previous work where we achieved homogeneous deposition of cellulose nanocrystals (CNCs) from a colloidal suspension by reinforcing Marangoni flow over the internal capillary flow (Gençer et al. Langmuir 2017, 33 (1), 228-234), we now set out to reduce the importance of capillary flow inside a drying droplet by inducing gelation. In this paper, we discuss the effect of gelation on the deposition pattern and on the self-assembly of CNCs during droplet drying. CNC films were obtained by drop casting CNC suspensions containing NaCl and CaCl salts. A mixed methodology using rheological and depolarized dynamic light scattering was applied to understand the colloidal behavior of the CNCs. In addition, analysis of the mixture's surface tension, viscosity, and yield stress of the suspensions were used to gain deeper insights into the deposition process. Finally, the understanding of the gelation behavior in the drying droplet was used to exert control over the deposit where the coffee-ring deposit can be converted to a dome-shaped deposit.
控制胶体沉积的最重要的方面之一是通过避免在干燥过程中液滴内的毛细流动引起的咖啡环效应来操纵沉积的均匀性。在我们之前的工作中,通过增强内部毛细流动上的 Marangoni 流实现了纤维素纳米晶体(CNC)的胶体悬浮液的均匀沉积(Gençer 等人,Langmuir 2017,33(1),228-234),现在我们通过凝胶化来降低干燥液滴内毛细流动的重要性。在本文中,我们讨论了凝胶化对液滴干燥过程中沉积图案和 CNC 自组装的影响。通过滴铸含有 NaCl 和 CaCl 盐的 CNC 悬浮液获得了 CNC 薄膜。采用流变学和去偏动态光散射的混合方法来理解 CNC 的胶体行为。此外,还分析了悬浮液的表面张力、粘度和屈服应力,以更深入地了解沉积过程。最后,利用对干燥液滴中凝胶化行为的理解来控制沉积,从而将咖啡环状沉积转换为穹顶状沉积。